Georgy Mochalov | Inorganic Chemistry | Best Researcher Award

Prof. Dr. Georgy Mochalov | Inorganic Chemistry | Best Researcher Award

Nizhny Novgorod State Technical University named after R.E. Alekseev, Russia

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Prof. Dr. Georgy Mochalov began his academic journey at the prestigious National Research Lobachevsky State University of Nizhny Novgorod, where he laid a strong foundation in the field of chemical sciences. Further sharpening his expertise, he underwent professional training at the G.G. Devyatykh Institute of Chemistry of High-Purity Substances under the Russian Academy of Sciences. This early academic background equipped him with the critical knowledge needed for his future pioneering work in high-purity chemical production.

๐Ÿ’ผ Professional Endeavors

With an impressive career spanning over 50 years, Prof. Dr. Mochalov has devoted his professional life to the advancement of chemical technologies, specifically focusing on the development of processes for synthesizing and purifying high-purity volatile silicon compounds and alkyl organometallic compounds. His professional journey is closely linked to Nizhny Novgorod State Technical University named after R.E. Alekseev, Russia, where he has played a significant role in both academic and industrial research.

๐Ÿ”ฌ Contributions and Research Focus

Prof. Dr. Mochalov is recognized for his outstanding contributions in developing technologies for the synthesis, deep purification, and analysis of high-purity volatile substances. His research focuses primarily on alkyl compounds of cadmium, zinc, tellurium, as well as hydrides and chlorides of silicon. His work also addresses the vital need for safe and sustainable waste disposal methods for hazardous materials such as silicon and germanium tetrachlorides.

๐ŸŒ Impact and Influence

Through his research and innovations, Prof. Dr. Mochalov has greatly influenced the fields of materials science and semiconductor technology. His development of high-pressure distillation processes for purifying silane and the creation of gas chromatographic methods for analyzing various volatile compounds has had a profound impact on both academia and industry, particularly in the production of ultra-pure substances critical for advanced electronic applications.

๐Ÿ† Patents and Industry Contributions

A prolific innovator, Prof. Dr. Mochalov holds 9 patents related to the synthesis and purification of volatile compounds and waste treatment technologies. His consultancy and industry engagements span 3 major projects, underscoring his role as a trusted expert for advancing technological solutions in industrial chemistry.

๐Ÿงช Technical Skills

Prof. Dr. Mochalov is skilled in developing gas chromatographic analytical techniques, high-pressure distillation processes, and designing systems for synthesizing and purifying high-purity silicon-based and organometallic compounds. His technical acumen has been instrumental in creating scalable solutions for both laboratory and industrial applications.

๐Ÿ‘จโ€๐Ÿซ Teaching Experience

Alongside his research, Prof. Dr. Mochalov has mentored and guided students and young researchers at Nizhny Novgorod State Technical University. His teaching experience is enriched by decades of hands-on research and development, making him a valued academician and mentor in his department.

๐ŸŒŸ Legacy and Future Contributions

Prof. Dr. Mochalovโ€™s legacy lies in his significant advancements in high-purity compound synthesis and purification, which continue to influence semiconductor and materials industries globally. Looking forward, he aims to further innovate in the field of waste management and green chemistry by enhancing methods for the safe and efficient disposal of toxic chlorides and organometallic by-products.

๐Ÿ“–Notable Publications

Promising Catalyst for Chlorosilane Dismutation
Authors: O. Zhuchok, Y. Stolmakov, A.A. Kalinina, N. Maleev, G.M. Mochalov
Journal: Sci
Year: 2024

Plasma-Chemical Disposal of Silicon and Germanium Tetrachlorides Waste by Hydrogen Reduction
Authors: R.A. Kornev, I.B. Gornushkin, L.V. Shabarova, D. Belousova, N. Maleev
Journal: Sci
Year: 2024

Synthesis, Structure, and Biological Activity of the Germanium Dioxide Complex Compound with 2-Amino-3-Hydroxybutanoic Acid
Authors: A.V. Kadomtseva, G.M. Mochalov, M.A. Zasovskaya, A.M. Obโ€™โ€™edkov
Journal: Inorganics
Year: 2024

Nuchnapa Tangboriboon | Materials Chemistry | Best Researcher Award -1921

Assoc. Prof. Dr. Nuchnapa Tangboriboon | Materials Chemistry | Best Researcher Award

Kasetsart University, Thailand

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Assoc. Prof. Dr. Nuchnapa Tangboriboon, currently a distinguished faculty member at Kasetsart University, Thailand, has dedicated her academic journey to advancing material sciences, particularly focusing on inorganic, ceramic, and bio-nanomaterials. From her formative years as a researcher to her current role, Dr. Tangboriboon has consistently shown a passion for integrating natural and synthetic materials for industrial and biomedical applications. Her foundational studies laid the groundwork for her contributions to sustainable materials science and engineering.

๐Ÿข Professional Endeavors

Dr. Tangboriboon serves as the head of the Applications of Inorganic, Ceramic, and Natural Bio-Nanomaterials Research Unit at Kasetsart University. Under her supervision, the research unit operates at the intersection of traditional material processing and innovative nanotechnology. The lab has developed expertise in ceramic, glass, and gypsum processing for advanced applications and building construction, alongside pioneering research in bio-nanomaterials and their applications in healthcare and industrial sectors.

๐Ÿ”ฌ Contributions and Research Focus

Dr. Tangboriboon’s research contributions have significantly advanced the understanding and application of bio-nanomaterials for industrial and medical applications. Her lab specializes in:

  • The development of bio-nanomaterials for innovative medical solutions.
  • 3D printing, sol-gel, and slip casting techniques for ceramics and glasses.
  • Designing and producing synthetic and natural rubber films for medical products, including gloves, patches, and tissue-engineering materials using gypsum and ceramic hand molds.
  • Crafting bio-composite materials and eco-friendly bio-catalysts aimed at promoting alternative and sustainable energy solutions.

๐ŸŒ Impact and Influence

Dr. Tangboriboon’s work holds considerable influence in both academic and industrial spheres, bridging the gap between fundamental research and real-world applications. Her advancements in natural rubber latex applications and bio-composites have been instrumental in Thailandโ€™s growing emphasis on sustainable material production, healthcare innovations, and green technology.

๐Ÿ“š Academic Citations and Recognition

With numerous publications in peer-reviewed journals, Dr. Tangboriboon’s research has garnered significant academic recognition, contributing to her standing as a respected expert in her field. Her work is frequently cited by researchers focusing on bio-nanomaterials, ceramic sciences, and green energy technologies, affirming her contributions to cutting-edge scientific development.

๐Ÿ› ๏ธ Technical Skills

Dr. Tangboriboon has mastered a variety of advanced material processing techniques, including:

  • 3D printing of ceramics and glasses.
  • Sol-gel synthesis and slip casting methods.
  • Fabrication of rubber-based biomedical devices.
  • Bio-catalyst development for renewable energy applications.

Her proficiency extends to interdisciplinary fields combining materials science, biomedical engineering, and sustainable technology.

๐Ÿ‘ฉโ€๐Ÿซ Teaching Experience

In addition to her research, Dr. Tangboriboon is an enthusiastic educator. At Kasetsart University, she mentors undergraduate and graduate students, fostering a learning environment that emphasizes research-based education. She has supervised numerous thesis projects and research initiatives, equipping students with practical skills in ceramic processing, bio-nanomaterial fabrication, and medical device prototyping.

๐ŸŒฑ Legacy and Future Contributions

Dr. Tangboriboon envisions a future where bio-based materials and nanotechnology will play pivotal roles in addressing global challenges such as environmental sustainability and public health. Her ongoing commitment to green resources and alternative energies ensures that her lab will continue to contribute impactful solutions to both academia and industry. She is dedicated to nurturing the next generation of researchers while pushing the boundaries of material science innovation.

๐Ÿ“–Notable Publications

Multifunctional role of calcium chloride in improving the chemical, mechanical, and physical properties of natural and synthetic rubber latex for gloves and transdermal patch films
Authors: P. Kantasa, A. Obormkul, N. Tangboriboon
Journal: Industrial Crops and Products
Year: 2025

Bio composite of porous hydroxyapatite and collagen extracted from eggshell membrane and Oreochromis niloticus fish skin for bone tissue applications
Authors: N. Ingwattanapok, Y. Sakunrak, N. Tangboriboon
Journal: Journal of Applied Polymer Science
Year: 2023

Enhancement of water and salt penetration resistance into mortar cement composited with vulcanized natural rubber compound
Authors: I. Jitkarune, P. Manantapong, N. Tangboriboon
Journal: Journal of Applied Polymer Science
Year: 2023

Conductive and self-cleaning composite membranes from corn husk nanofiber embedded with inorganic fillers (TiO2, CaO, and eggshell) by sol-gel and casting processes for smart membrane applications
Authors: S. Posri, N. Tangboriboon
Journal: Reviews on Advanced Materials Science
Year: 2023

Modified thermal- and sound-absorption properties of plaster sandwich panels with natural rubber-latex compounds for building construction
Authors: S. Pianklang, S. Muntongkaw, N. Tangboriboon
Journal: Journal of Applied Polymer Science
Year: 2022

Effects of physical and chemical properties of ceramic hand moulds on natural rubber latex glove film formation
Authors: N. Tangboriboon, S. Changkhamchom, A. Sirivat
Journal: International Journal of Materials and Product Technology
Year: 2022

 

Rajeev Kumar | Environmental Chemistry | Best Researcher Award

Dr. Rajeev Kumar | Environmental Chemistry | Best Researcher Award

Panjab University, India

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Dr. Rajeev Kumar began his academic journey at Panjab University, Chandigarh, one of Indiaโ€™s leading institutions. His foundational education includes a B.Sc. (Hons. School) in Chemistry (1997-2000), followed by an M.Sc. (Hons. School) in Chemistry (Inorganic Chemistry specialization) (2001-2003) from the Department of Chemistry, Panjab University. He later pursued his Ph.D. in Inorganic/Physical Chemistry (2003-2010) under the mentorship of Prof. K.K. Bhasin and Prof. S.K. Mehta, focusing on the synthesis, characterization, and evaluation of organosulfur, selenium, and tellurium compounds. His solid academic foundation is complemented by a strong background in chemistry, mathematics, physics, and biology from his earlier schooling.

๐Ÿ’ผ Professional Endeavors

Dr. Kumarโ€™s professional path has been largely shaped by his research tenure at the Department of Chemistry, Panjab University, where he gained extensive research experience. During his M.Sc. dissertation, he worked on the synthesis and study of aliphatic and aromatic chalcogen compounds under the supervision of Dr. Surinder K. Sharma and Prof. K.K. Bhasin. His doctoral research expanded on this theme, focusing on chalcogen-based organometallic compounds, contributing valuable insights to the fields of inorganic and physical chemistry.

๐Ÿงช Contributions and Research Focus

Dr. Kumarโ€™s research delves deeply into organosulfur, organoselenium, and organotellurium chemistry, emphasizing synthesis and characterization. His work has significant implications for material science, catalysis, and medicinal chemistry. Through his Ph.D. research, he explored the reactivity and structural properties of chalcogen-containing compounds, pushing the frontiers of chalcogen chemistry. His passion for environmentally sustainable research is also evident through his recognition at international conferences promoting green initiatives.

๐ŸŒŸ Impact and Influence

Dr. Kumar has not only made his mark through his research but has also been acknowledged for publishing outstanding scientific papers from Panjab University, earning multiple Certificates of Appreciation in 2020 and 2022 from prestigious university awards. His research contributions have influenced peers within his field, particularly in inorganic and physical chemistry, and his participation in conferences reflects his active engagement in the global research community.

๐Ÿ“š Academic Cites and Recognitions

Dr. Kumarโ€™s scholarly output has earned him multiple accolades: Certification of Appreciation for โ€œEnvironment Friendly Initiativesโ€ at an International Conference organized by CRRID, Chandigarh. Prem Lata and Prof. D.V.S. Jain Research Foundation Awards in 2020 and 2022 for his impactful publications.ย He has also been shortlisted for the Shyama Prasad Mukherjee Fellowship, a distinction given to the top 20% of CSIR Fellows, underscoring his academic excellence.

๐Ÿ› ๏ธ Technical Skills

Dr. Kumar possesses strong technical proficiency in inorganic synthesis, spectroscopic techniques (UV-Vis, IR, NMR, etc.), and handling of air-sensitive compounds, particularly chalcogen-based organometallics. His skillset also includes laboratory techniques such as crystallization, electrochemical studies, and structural elucidation through X-ray diffraction.

๐ŸŽ“ Teaching and Mentoring Experience

While primarily a researcher, Dr. Kumar has been actively involved in academic mentorship during his time at Panjab University. He has contributed to laboratory instruction, guiding students in the synthesis and analysis of inorganic and organometallic compounds. His dual role as a researcher and mentor highlights his dedication to nurturing future scientists.

๐ŸŒ Service to Society

Beyond academia, Dr. Kumar has demonstrated a commitment to community service, voluntarily serving as a Traffic Marshal with Chandigarh Police since 2016, contributing to public safety and awareness.

๐Ÿ… Legacy and Future Contributions

Dr. Kumarโ€™s dedication to inorganic chemistry, combined with his contributions to organochalcogen research, positions him as a valuable figure in the Indian scientific community. Moving forward, he aims to expand the applications of organosulfur and organoselenium compounds in fields such as catalysis, pharmaceuticals, and sustainable materials. His legacy includes not only his impactful research but also his commitment to mentorship, environmental stewardship, and civic duty.

๐Ÿ“–Notable Publications

Synergetic effect of vancomycin loaded silver nanoparticles for enhanced antibacterial activity
Authors: A Kaur, S Preet, V Kumar, R Kumar, R Kumar
Journal: Colloids and Surfaces B: Biointerfaces
Year: 2019

Green synthesis of CuO nanomaterials and their proficient use for organic waste removal and antimicrobial application
Authors: M Chauhan, B Sharma, R Kumar, GR Chaudhary, AA Hassan, S Kumar
Journal: Environmental Research
Year: 2019

Fabrication and characterization of highly sensitive and selective arsenic sensor based on ultra-thin graphene oxide nanosheets
Authors: S Kumar, G Bhanjana, N Dilbaghi, R Kumar, A Umar
Journal: Sensors and Actuators B: Chemical
Year: 2016

Evaluation of novel indigenous fungal consortium for enhanced bioremediation of heavy metals from contaminated sites
Authors: D Talukdar, T Jasrotia, R Sharma, S Jaglan, R Kumar, R Vats, R Kumar, …
Journal: Environmental Technology & Innovation
Year: 2020

Zinc oxide quantum dots as efficient electron mediator for ultrasensitive and selective electrochemical sensing of mercury
Authors: G Bhanjana, N Dilbaghi, R Kumar, S Kumar
Journal: Electrochimica Acta
Year: 2015

Zhongchuang Liu | Environmental Chemistry | Chemical Environmental Award

Dr. Zhongchuang Liu | Environmental Chemistry | Chemical Environmental Award

Chongqing Electric Power College, China

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Academic Background

Dr. Zhongchuang Liu is a distinguished environmental scientist specializing in ecological restoration, environmental quality assessment, and biological resource utilization. He holds a Ph.D. in Environmental Science and Engineering and is currently based at the Department of Environmental Engineering Technology, College of Power Engineering, Chongqing Electric Power College, China. His research focuses on developing sustainable solutions for environmental remediation and resource management, contributing to cleaner ecosystems and improved environmental policies.

๐ŸŒฑ Research Areas and Expertise

Dr. Liu’s expertise encompasses several critical areas in environmental science. His work in ecological restoration involves the phytoremediation of heavy metal-contaminated soil and polluted water bodies, utilizing plants to naturally cleanse ecosystems. His research in environmental quality assessment includes regional water and soil monitoring, investigating soil microenvironment changes, and assessing the ecological impact and risks of environmental pollutants. Additionally, his studies in biological resource utilization focus on the preparation and application of plant biomass charcoal and the sustainable disposal of vegetable and fruit waste, promoting a circular economy and reducing environmental pollution.

๐ŸŽค Conference Leadership and Contributions

Dr. Liu plays a key role in the international scientific community by leading discussions on environmental remediation and waste management. As the Chair of the International Symposium on Environmental Remediation and Sustainable Development (ERSD 2023), he guided expert discussions on innovative strategies for environmental sustainability. He has also served on the committee for the 6th International Conference on Recycling and Waste Management (2023), contributing his expertise in sustainable waste treatment and recycling technologies. His leadership in these conferences has facilitated the exchange of knowledge and advancements in environmental protection.

๐Ÿ“ Editorial Roles in Scientific Journals

In addition to his research contributions, Dr. Liu holds significant editorial positions in scientific publishing, ensuring the dissemination of high-quality research in environmental science. He serves as an Editorial Board Member for Plos One, a Lead Guest Editor for Environmental Science and Pollution Research, a Primary Guest Editor for JoVE โ€“ Journal of Visualized Experiments, and a Section Editor for Special Issues in Letters in Organic Chemistry. Through his editorial work, he supports the publication of innovative research in ecological restoration, pollution control, and sustainable development, fostering scientific progress in these fields.

๐ŸŒ Impact and Future Contributions

Dr. Liu’s research has a profound impact on environmental sustainability, bridging scientific innovation with practical solutions for ecosystem restoration and resource management. His work has contributed to the development of effective phytoremediation techniques, improved ecological risk assessment methodologies, and promoted sustainable waste management strategies. Looking ahead, he aims to enhance the efficiency of phytoremediation technologies, develop advanced environmental monitoring systems, and promote sustainable practices in waste management to further contribute to global environmental conservation efforts.

๐Ÿ“–Notable Publications

Co-hydrothermal carbonization of styrofoam and sawdust: fuel properties evaluation and effect of water recirculation on hydrochar properties

Authors: N. Sultana, Nasrin; M. Atikul Islam, Md; Z.C. Liu, Zhong Chuang; B.H. Hameed, Bassim H.; M.A. Islam, Md Azharul

Journal: Biomass Conversion and Biorefinery

Year: 2025

Role of metal and non-metal dopants in modulating g-C3N4 for photocatalytic applications

Authors: R. Muhammad, Rizwan; A. Zada, Amir; S. Azizi, Shohreh; Z.C. Liu, Zhong Chuang; M.H. Eisa, M. H.

Journal: International Journal of Hydrogen Energy

Year: 2025

Control strategies for microplastic pollution in groundwater

Authors: Z.C. Liu, Zhong Chuang; A.U.R. Bacha, Aziz Ur Rahim; L. Yang, Lei

Journal: Environmental Pollution

Year: 2023

Xiong He | Inorganic Chemistry | Best Researcher Award

Assist. Prof. Dr. Xiong He | Inorganic Chemistry | Best Researcher Award

Guangxi University of Science and Technology, China

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Dr. Xiong He began his academic journey at the Harbin Institute of Technology, where he pursued a Bachelorโ€™s degree in Nuclear Chemical Engineering (2009-2013). During this time, he gained a solid foundation in nuclear chemistry, materials science, and energy conversion technologies. His keen interest in sustainable energy led him to continue his studies at the same institution, earning a Ph.D. in Chemical Engineering and Technology (2013-2019) under the supervision of Prof. Xin Li. His doctoral research focused on the design of hierarchical TiOโ‚‚ photoanodes for dye-sensitized solar cells (DSSCs), aiming to enhance the efficiency of solar energy harvesting and conversion. This research contributed significantly to the development of improved photovoltaic materials, which are crucial for next-generation solar energy applications.

๐Ÿ‘จโ€๐Ÿซ Professional Endeavors

After completing his Ph.D., Dr. Xiong He joined Guangxi University of Science and Technology in August 2019 as an Associate Professor in the School of Electronic Engineering. In this role, he has been actively engaged in both teaching and research, with a strong focus on nanomaterials, electrocatalysis, and renewable energy technologies. His work aims to bridge the gap between academic research and practical energy applications, contributing to advancements in clean energy solutions.

๐Ÿ”ฌ Contributions and Research Focus

Dr. Xiong Heโ€™s research primarily focuses on developing high-efficiency catalysts for the electrocatalytic oxygen evolution reaction (OER), a crucial process in green hydrogen production and sustainable energy systems. His work involves designing advanced nanocatalysts, optimizing material structures, and investigating reaction mechanisms to improve energy efficiency. Additionally, his earlier research on hierarchical TiOโ‚‚ photoanodes significantly contributed to the development of dye-sensitized solar cells (DSSCs), enhancing their light absorption, charge transport, and overall efficiency. His research findings provide valuable insights into material design strategies that can be applied to various energy conversion technologies.

๐ŸŒ Impact and Influence

Dr. Xiong Heโ€™s research has made a significant impact on the fields of electrocatalysis, nanotechnology, and renewable energy. His work on catalyst development has contributed to advancing hydrogen fuel production, while his contributions to DSSCs have helped improve solar energy conversion efficiency. By integrating innovative material engineering techniques, his research has provided new strategies for developing efficient, stable, and cost-effective energy solutions. His findings are widely referenced by researchers working on sustainable energy applications, making a lasting impact on the global energy landscape.

๐Ÿ“š Academic Citations

Dr. Xiong He has published extensively in high-impact peer-reviewed journals, and his research has been cited by scholars in the fields of electrocatalysis, nanomaterials, and renewable energy. His contributions continue to shape the development of novel materials for energy storage and conversion, reinforcing his role as a leading researcher in clean energy technologies. His work is widely recognized for its relevance to solving energy challenges and advancing the efficiency of renewable energy systems.

๐Ÿ› ๏ธ Technical Skills

Dr. Xiong He possesses a strong technical background in materials science and electrochemistry. His expertise includes nanomaterial synthesis and characterization, utilizing techniques such as X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy (XPS). He is also proficient in electrochemical analysis methods, including cyclic voltammetry and electrochemical impedance spectroscopy, which are essential for evaluating catalyst performance. Additionally, he has experience in photovoltaic device fabrication and efficiency testing, contributing to advancements in solar energy technologies. His skills in computational modeling for catalyst design further enhance his ability to develop and optimize high-performance materials for energy applications.

๐ŸŽ“ Teaching Experience

As an Associate Professor at Guangxi University of Science and Technology, Dr. Xiong He is deeply involved in teaching and mentoring students. He lectures on chemical engineering, nanomaterials, and renewable energy technologies, providing students with both theoretical knowledge and practical skills. He actively supervises undergraduate and graduate research projects, guiding students in developing innovative solutions for energy challenges. His commitment to education extends to training students in advanced laboratory techniques, ensuring that they acquire hands-on experience in material synthesis and characterization. Through his mentorship, he has inspired many students to pursue careers in scientific research and clean energy innovation.

๐ŸŒŸ Legacy and Future Contributions

Dr. Xiong Heโ€™s future contributions are aimed at furthering research in electrocatalysis, hydrogen energy, and solar energy conversion. He plans to expand his work on high-performance catalysts, improving their efficiency and stability for large-scale applications. Additionally, he aims to collaborate with international research teams to accelerate the development of sustainable energy solutions. His long-term vision includes bridging the gap between academic research and industrial applications, ensuring that nanomaterials and electrochemical technologies contribute effectively to real-world energy challenges. By continuing to mentor the next generation of scientists and engineers, he hopes to foster innovation and drive advancements in clean energy for a more sustainable future.

๐Ÿ“–Notable Publications

Tuning surface hydrophilicity of a BiVO4 photoanode through interface engineering for efficient PEC water splitting

Authors: S. Yu, Shuangwei; C. Su, Chunrong; Z. Xiao, Zhehui; Q. Jin, Qianqian; Z. Sun, Zijun

Journal: RSC Advances

Year: 2025

Rapid electrodeposition synthesis of partially phosphorylated cobalt iron phosphate for application in seawater overall electrolysis

Authors: J. Cai, Jiayang; D. Qu, Dezhi; X. He, Xiong; B. Zhu, Baoning; S. Yu, Shuangwei

Journal: Electrochimica Acta

Year: 2024

Construction of Heterostructured Ni3S2@V-NiFe(III) LDH for Enhanced OER Performance

Authors: Q. Dong, Qianqian; Q. Zhong, Qijun; J. Zhou, Jie; X. He, Xiong; S. Zhang, Shaohui

Journal: Molecules

Year: 2024

Employing shielding effect of intercalated cinnamate anion in NiFe LDH for stable and efficient seawater oxidation

Authors: J. Cai, Jiayang; X. He, Xiong; Q. Dong, Qianqian; Q. Jin, Qianqian; Z. Sun, Zijun

Journal: Surfaces and Interfaces

Year: 2024

 

Sun Chengwen | Thermochemistry | Best Researcher Award

Dr. Sun Chengwen | Thermochemistry | Best Researcher Award

Northeast Forestry University, China

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐Ÿ“š Early Academic Pursuits

Dr. Sun Chengwen embarked on his academic journey with a strong foundation in engineering. He completed his undergraduate studies at Harbin Engineering University from 2009 to 2013, focusing on power engineering and engineering thermophysics. Recognized for his outstanding academic performance, he was later awarded a government-sponsored opportunity to study abroad. His passion for energy research led him to pursue a Master-Doctor Combined Program at the Karlsruhe Institute of Technology, Germany (2021-2022), where he specialized in Thermal Energy Technology and Safety.

๐Ÿข Professional Endeavors

Currently, Dr. Sun serves as an Associate Professor at the School of Mechanical and Electrical Engineering, Northeast Forestry University (since May 2023). His work primarily involves advanced combustion technologies, detonation wave propagation, and energy efficiency improvements in combustion chambers. His interdisciplinary experience, gained through both domestic and international collaborations, positions him as a key contributor to modern combustion research.

๐Ÿ”ฌ Contributions and Research Focus

Dr. Sun’s research is centered on Rotating Detonation Combustion Technology, an advanced approach to achieving higher propulsion efficiency and energy conversion rates. His doctoral project at Harbin Engineering University (2016-2023) focused on:
1๏ธโƒฃ Explaining the formation of oblique shock waves and the behavior of detonation wave propagation in methane-air mixtures under single-point initiation.
2๏ธโƒฃ Analyzing the supercharging performance of rotating detonation combustion chambers under various working conditions, contributing to improved energy output and efficiency.
3๏ธโƒฃ Developing strategies to suppress pulsation and improve the uniformity of flow field distribution, enhancing combustion chamber stability and reducing emissions.

๐ŸŒ Impact and Influence

Dr. Sunโ€™s research holds significant implications for aerospace propulsion, power generation, and sustainable combustion technology. His contributions aid in the development of low-emission, high-efficiency combustion systems, paving the way for next-generation propulsion technology. His work serves as a reference for industries seeking to optimize energy conversion and fuel utilization efficiency.

๐Ÿ“– Academic Citations and Recognition

Dr. Sun has been recognized for his scholarly contributions, with his doctoral research ranking in the Top 10% of his field. His findings on detonation wave behavior and combustion chamber optimization have been cited in various high-impact journals. His expertise is frequently sought after in combustion research circles, both in China and internationally.

๐Ÿ› ๏ธ Technical Skills

Dr. Sun possesses expertise in:
โœ” Rotating detonation wave analysis and simulation
โœ” Computational Fluid Dynamics (CFD) for combustion modeling
โœ” High-speed flow field visualization techniques
โœ” Low-emission combustion chamber design
โœ” Experimental validation of detonation combustion performance

๐ŸŽ“ Teaching Experience

As an Associate Professor, Dr. Sun actively mentors students in the fields of power engineering, thermophysics, and combustion technology. His teaching approach integrates theoretical knowledge with experimental applications, ensuring students gain hands-on experience in advanced energy systems.

๐Ÿš€ Legacy and Future Contributions

Dr. Sun Chengwen is poised to make lasting contributions to clean energy and advanced propulsion systems. His research on low-emission detonation combustion technology aligns with global sustainability goals, making him a crucial figure in next-generation energy solutions. His future work will likely focus on expanding the application of rotating detonation technology in aerospace and power industries, further enhancing energy efficiency and environmental protection.

๐Ÿ“–Notable Publications

  • Performance evaluation and outlet load improvement of a rotating detonation combustor with different outlet nozzles

    • Journal: International Journal of Hydrogen Energy
    • Year: 2021.04
  • Effects of diverging nozzle downstream on flow field parameters of rotating detonation combustor

    • Journal: Applied Science
    • Year: 2019.10
  • Effect of expansion outlet on continuous rotating detonation combustor

    • Conference: ICDER International Conference
    • Year: 2019.08
  • Effects of Airflow Velocity and Droplet Diameter on the Secondary Breakup Characteristics

    • Journal: AIAA Journal
    • Year: 2021.08
  • The formation and development of oblique detonation wave with different chemical reaction models

    • Journal: Aerospace Science and Technology
    • Year: 2021.07
  • A combined theory model for predicting the viscosity of water-based Newtonian nanofluids containing spherical oxide nanoparticles

    • Journal: Journal of Thermal Analysis and Calorimetry
    • Year: 2018.01

 

Bonewendรฉ Mohamed Belemlilga | Medicinal Chemistry | Best Researcher Award

Dr. Bonewendรฉ Mohamed Belemlilga | Medicinal Chemistry | Best Researcher Award

Institut de Recherche en Sciences de la Santรฉ (IRSS), Burkina Faso

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Dr. Bonewendรฉ Mohamed Belemlilga earned his Ph.D. in Pharmaceutical Sciences, Pharmacology from Joseph KI-ZERBO University of Ouagadougou in 2019. His doctoral research was conducted in collaboration with the University of Paris-Saclay, strengthening his expertise in pharmacological experimentation and phytochemical studies.

๐Ÿ”ฌ Research Focus and Innovations

Dr. Belemlilgaโ€™s research is centered on the therapeutic properties of medicinal plants used to treat priority diseases, including:
โœ… Digestive parasitosis
โœ… Respiratory infections
โœ… Malaria and dengue fever
โœ… Liver diseases
โœ… Cancer

His work at the Institut de Recherche en Sciences de la Santรฉ (IRSS) involves pharmacological validation of medicinal plant products and developing antiparasitic phytomedicines.

๐Ÿฅ Clinical Trials and Research Projects

He is the coordinator of a clinical trial project focused on developing an antiparasitic phytomedicine for treating digestive parasitosis in children. Additionally, he has led and contributed to several completed and ongoing research projects, including:
๐Ÿ”น Study of the anthelmintic properties of Saba senegalensis extracts on Haemonchus contortus, funded by the Burkina Faso Ministry of Health (FARES/P1 2013).
๐Ÿ”น Campus France scholarship project (895739H), supported by the French Embassy in Burkina Faso.

๐ŸŒ International Collaborations

Dr. Belemlilga actively collaborates with renowned institutions to enhance the pharmacological understanding of medicinal plants:
๐Ÿ”ธ Universitรฉ Paris-Saclay โ€“ Phytochemical characterization and antiparasitic testing
๐Ÿ”ธ University Fรฉlix Houphouรซt-Boigny โ€“ Pharmacological activity research
๐Ÿ”ธ Kwame Nkrumah University of Science and Technology โ€“ Medicinal plant-based drug development

Additionally, he is a member of the International Research Laboratory Environnement, Santรฉ, Sociรฉtรฉs (IRL 3189 ESS), further solidifying his global scientific engagement.

๐Ÿ“Š Impact and Scientific Contributions

Dr. Belemlilgaโ€™s research significantly contributes to scientific validation of traditional medicine and new therapeutic approaches. His work aids in bridging the gap between phytomedicine and modern pharmacology, offering potential solutions for neglected tropical diseases.

๐Ÿ”ฎ Future Contributions

His ongoing efforts focus on developing safe and effective plant-based medicines while continuing international collaborations to strengthen African research capacity in **phytomedicine and pharmacology

๐Ÿ“–Notable Publications

Anthelmintic activity of Saba senegalensis (A. DC.) Pichon (Apocynaceae) extract against adult worms and eggs of Haemonchus contortus
Authors: MB Belemlilga, A Traorรฉ, S Ouรฉdraogo, A Kaborรฉ, HH Tamboura, …
Journal: Asian Pacific Journal of Tropical Biomedicine
Year: 2016

Phytochemical analysis and ovicidal activity of Cassia sieberiana, Guiera senegalensis and Excoecaria grahamii extracts
Authors: A Traorรฉ, S Ouรฉdraogo, MB Belemlilga, A Kaborรฉ, …
Journal: African Journal of Pharmacy and Pharmacology
Year: 2017

Evaluation of antioxidant, anti-inflammatory and analgesic activities of leaves of Saba senegalensis (A. DC) Pichon (Apocynaceae)
Authors: MB Belemlilga, TK Traorรฉ, GAL Boly, N Ouรฉdraogo, A Traorรฉ, M Lompo, …
Journal: Cardiovascular Disorders
Year: 2019

Preclinical Evaluation of the Antihypertensive Effect of an Aqueous Extract of Anogeissus leiocarpa (DC) Guill et Perr. Bark of Trunk in L-NAME-Induced โ€ฆ
Authors: L Belemnaba, M Nitiรฉma, S Ilboudo, GG Ouรฉdraogo, N Ouรฉdraogo, …
Journal: Journal of Experimental Pharmacology
Year: 2021

Anti-inflammatory and analgesic activities of extracts from Balanites aegyptiaca L. Delile (Balanitaceae) root bark: Plant used against liver diseases in Burkina Faso
Authors: KT Traorรฉ, N Ouรฉdraogo, L Belemnaba, GAL Boly, CB Atchadรฉ, MB Belemlilga, …
Journal: African Journal of Pharmacy and Pharmacology
Year: 2019

Isela Rojas | Polymer Chemistry | Best Researcher Award -1862

Dr. Isela Rojas | Polymer Chemistry | Best Researcher Award

Universidad Autรณnoma de Querรฉtaro, Mexico

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Dr. Isela Rojas embarked on her academic journey at the Autonomous University of Querรฉtaro (UAQ-FC), Mexico, where she earned her professional title and MSc. degree. She further advanced her studies by obtaining a Ph.D. degree from the National Autonomous University of Mexico (UNAM), Faculty of Chemistry. Her educational foundation in chemistry and nutrition laid the groundwork for her future contributions to research and academia.

๐Ÿ‘ฉโ€๐Ÿซ Professional Endeavors

Since 1991, Dr. Rojas has been dedicated to training undergraduate and postgraduate students in Nutrition, Food Chemistry, and Medicinal Chemistry at UAQ-FC. Her career as a professor and researcher has not only shaped the academic paths of countless students but has also significantly contributed to the university’s growth in these specialized fields.

๐Ÿ”ฌ Contributions and Research Focus

Dr. Rojasโ€™s research primarily focuses on the chemical and nutritional analysis of natural products. She investigates the role of micronutrients in bone mass development and the bioavailability of minerals in plant-based products. Additionally, her work extends to developing sustainable technologies aimed at enhancing nutraceutical ingredients in foods and minimizing raw material waste, contributing to global sustainability efforts.

๐ŸŒ Impact and Influence

Her academic and research endeavors have fostered strong collaborations with national and international institutions, such as UNAM, the Autonomous University of Nuevo Leรณn, the Autonomous Metropolitan University, and international centers like the University of the Valley of Guatemala and the National University of Colombia. These collaborations have led to student mobility programs and numerous joint research publications, strengthening scientific ties worldwide.

๐Ÿ“Š Academic Citations and Publications

Dr. Rojas has made significant contributions to scientific research, with 37 publications in international indexed journals, 25 national and 15 international presentations, and five book chapters. She has successfully completed six research projects and is currently leading two ongoing projects. Her citation index includes an impressive h-index of 29 and an i10 index of 41. She has also published one patent, showcasing her ability to innovate within her field. Additionally, she has fostered strong collaborations with national and international institutions, including UNAM, the Autonomous University of Nuevo Leรณn, the National University of Colombia, and others, enhancing student mobility and contributing to the publication of scientific articles

๐Ÿ… Technical Skills and Expertise

Her expertise spans multiple disciplines within chemistry and nutrition, with a focus on natural product analysis, mineral bioavailability, and nutraceutical development. She is also skilled in scientific research methodologies, chemical analysis techniques, and sustainable food technologies.

๐ŸŽ“ Teaching Experience and Mentorship

Dr. Rojas has played a pivotal role in mentoring undergraduate and postgraduate students for over three decades. Her dedication to education has influenced many emerging scientists and professionals in the field of chemistry and nutrition.

๐Ÿ”ฎ Legacy and Future Contributions

Looking ahead, Dr. Rojas aims to continue her research on sustainable food technologies and nutritional science innovations. She remains committed to mentoring young researchers, fostering academic collaborations, and contributing to the global scientific community through impactful research and publications.

๐Ÿ“–Notable Publications

Physicochemical Characterization of Nopal Pads (Opuntia ficus indica) and Dry Vacuum Nopal Powders as a Function of the Maturation
Authors: ME Rodrรญguez-Garcรญa, C De Lira, E Hernรกndez-Becerra, …
Journal: Plant Foods for Human Nutrition
Year: 2007

Spasmolytic Effects, Mode of Action, and Structureโˆ’Activity Relationships of Stilbenoids from Nidema boothii
Authors: Y Hernรกndez-Romero, JI Rojas, R Castillo, A Rojas, R Mata
Journal: Journal of Natural Products
Year: 2004

Smooth muscle relaxing activity of gentiopicroside isolated from Gentiana spathacea
Authors: A Rojas, M Bah, JI Rojas, DM Gutiรฉrrez
Journal: Planta Medica
Year: 2000

Physicochemical and rheological characterization of Opuntia ficus mucilage at three different maturity stages of cladode
Authors: M Contreras-Padilla, ME Rodrรญguez-Garcรญa, E Gutiรฉrrez-Cortez, …
Journal: European Polymer Journal
Year: 2016

Smooth muscle relaxing flavonoids and terpenoids from Conyza filaginoides
Authors: RBEL R. Mata, A. Rojas, L. Acevedo, S. Estrada, F. Calzada, I. Rojas
Journal: Planta Medica
Year: 1997

Changjin Xu | Analytical Chemistry | Best Researcher Award -1902

Dr. Changjin Xu | Analytical Chemistry | Best Researcher Award

Inner Mongolia Medical University, China

๐Ÿ‘จโ€๐ŸŽ“Profiles

โœจ Early Academic Pursuits

Dr. Changjin Xu began his academic journey with a strong foundation in chemical engineering and technology. His undergraduate studies at Inner Mongolia Agricultural University (2010-2014) laid the groundwork for his passion for materials science and applied chemistry. He pursued a Masterโ€™s degree in Applied Chemistry at Inner Mongolia University (2014-2017), further refining his expertise in the field. His dedication to research led him to obtain a Ph.D. in Materials Science from Northeastern University (2017-2021), where he conducted in-depth studies on nanomaterials and catalytic performance.

๐ŸŽ“ Professional Endeavors

Since April 2022, Dr. Xu has been serving as a Lecturer at the School of Pharmacy, Inner Mongolia Medical University. His role involves teaching, mentoring students, and conducting high-impact research in materials science and its applications in the pharmaceutical sector.

๐Ÿ’ช Contributions and Research Focus

Dr. Xuโ€™s research primarily revolves around nanomaterials synthesis, catalytic performance optimization, and intermetallic compounds. His expertise in micro-arc oxidation preparation has significantly contributed to advancements in catalysis and materials science.

Notable Research Project:

  • National Natural Science Foundation of China (NSFC) General Project (51971059)
    • Title: Micro-arc oxidation preparation and catalytic performance research of precious metal intermetallic compound nanocrystals
    • Duration: 2020-01-01 to 2023-12-31
    • Funding: RMB 600,000
    • Role: Participated in the project, contributing to innovative research in catalytic materials.

๐ŸŒŸ Impact and Influence

Dr. Xuโ€™s research has made notable contributions to the field of materials science and catalysis, with implications in pharmaceutical and chemical engineering applications. His work in nanocrystal synthesis and catalytic efficiency improvement is paving the way for future innovations.

๐ŸŽ‰ Academic Citations

Dr. Xuโ€™s publications in high-impact journals have received recognition within the scientific community. His research papers focus on nanostructured materials, surface engineering techniques, and advanced catalysis.

๐Ÿ› ๏ธ Technical Skills

Dr. Xu is proficient in materials characterization techniques, nanomaterial synthesis, catalytic performance analysis, and micro-arc oxidation. His expertise spans multiple advanced methodologies, ensuring his research aligns with global scientific advancements.

๐Ÿ‘จโ€๐Ÿ‘ฉโ€๐Ÿ‘ฆ Teaching Experience

As a lecturer, Dr. Xu actively engages in student mentorship, curriculum development, and research supervision. His ability to integrate real-world applications into academic learning enhances students’ understanding of materials science in pharmaceuticals.

โš–๏ธ Legacy and Future Contributions

Dr. Xu aims to continue his groundbreaking research in nanomaterials and catalysis, expand his collaborative projects, and contribute to the development of new materials for pharmaceutical applications. His commitment to academic excellence and innovation ensures his lasting impact on the scientific community

๐Ÿ“–Notable Publications

From FCC to BCC: Engineering Pd nuclearity in the PdCu catalyst to enhance ethylene selectivity in acetylene hydrogenation
Authors: Changjin Xu, Yinglei Liu, Huiqing Guo, Chun Du, Gaowu Qin, Song Li
Journal: Inorganic Chemistry
Year: 2025

Engineering CeO2 configurations to regulate the CuO dispersion and switch pathways of preferential CO oxidation
Authors: Junfang Ding, Changjin Xu, Guilan Fan, Tuya Naren, Yan Wang, Yang Liu, Xiaojun Gu, Limin Wu, Shanghong Zeng
Journal: Applied Catalysis B: Environmental
Year: 2023

Enhancing selectivity for semi-hydrogenation of Ni by periodic isolation in the MMโ€ฒX structure
Authors: Yinglei Liu, Changjin Xu, Bo Yang, Xiangying Meng, Gaowu Qin, Song Li
Journal: Catalysis Science & Technology
Year: 2023

Carbon-CeO2 interface confinement enhances the chemical stability of Pt nanocatalyst for catalytic oxidation reactions
Authors: Xu Changjin, Zhang Yue, Chen Jing, Li Song, Zhang Yawen, Qin Gaowu
Journal: Science China Materials
Year: 2021

Engineering the epitaxial interface of Pt-CeO2 by surface redox reaction guided nucleation for low temperature CO oxidation
Authors: Xu Changjin, Wu Yutong, Li Song, Zhou Jun, Chen Jing, Jiang Min, Zhao Hongda, Qin Gaowu
Journal: Journal of Materials Science & Technology
Year: 2020

Stella Girousi | Analytical Chemistry | Analytical Chemistry Award-1884

Prof. Dr. Stella Girousi | Analytical Chemistry | Analytical Chemistry Award

Aristotle University of Thessaloniki, Greece

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Academic and Professional Background

Prof. Dr. Girousi Stella is a distinguished researcher in Analytical Chemistry, currently based at the Analytical Chemistry Laboratory, Chemistry Department, Aristotle University of Thessaloniki, Greece. With extensive experience in electroanalytical methods, biosensor development, and chemical analysis, she has made significant contributions to biomedical, environmental, and food sample analysis.

๐Ÿ”ฌ Research Activity and Interests

Prof. Dr. Stella specializes in developing and applying electroanalytical methods for detecting and analyzing biological, environmental, and food samples, with a particular focus on genotoxic compounds and pharmacologically active substances. Her research encompasses electrochemical biosensors and DNA analysis, including the development of enzymic and electrochemical DNA biosensors for studying drug-DNA interactions, DNA methylation detection, and epigenetic control. She also explores the application of screen-printing technology and nanomaterials to innovate biosensor designs. In the field of voltammetric determination of metals, she utilizes mercury, carbon, and bismuth thin-film electrodes to develop analytical methods for metal ion detection. Additionally, she works on the chemical modification of electrode surfaces with metallic nanoparticles and advanced carbon materials to enhance sensitivity in electrochemical sensing applications. Her research also extends to the study of coordination compounds of biological concern, employing electroanalytical techniques to investigate biological and pharmacological interactions

๐Ÿ† Impact and Contributions

Prof. Dr. Stella has been at the forefront of electrochemical sensor technology, contributing to environmental monitoring, biomedical diagnostics, and pharmaceutical analysis. Her research has advanced the detection of trace biomolecules, pollutants, and therapeutic compounds, fostering new methodologies in chemical analysis and biosensing technologies.

Her work has influenced:
๐Ÿ”ฌ Biomedical diagnostics โ€“ Enhancing biosensor technology for disease detection and genetic analysis.
๐ŸŒ Environmental sustainability โ€“ Developing sensitive detection methods for toxic metals and pollutants.
๐Ÿ’Š Pharmaceutical research โ€“ Investigating drug interactions with biomolecules for better therapeutic applications.

๐Ÿ“š Publications and Research Recognition

Prof. Dr. Stellaโ€™s research has been widely cited in scientific literature, with numerous contributions to high-impact journals. Her Scopus and ORCID profiles highlight her extensive work in analytical and electrochemical chemistry, reinforcing her position as a leading researcher in electroanalytical science.

๐Ÿ› ๏ธ Technical Expertise

๐Ÿ”น Electroanalytical Methods (Voltammetry, Potentiometry, Impedance Spectroscopy)
๐Ÿ”น Biosensor Development (DNA, Enzymic, and Electrochemical Sensors)
๐Ÿ”น Nanomaterials & Screen-Printed Electrodes for Analytical Applications
๐Ÿ”น Metal Ion Detection using Mercury & Bismuth Thin-Film Electrodes
๐Ÿ”น Coordination Chemistry & Epigenetic Studies via Electrochemical Methods

๐ŸŽ“ Teaching and Mentorship

As a leading academic, Prof. Dr. Stella has mentored numerous students and researchers, guiding them in advanced electrochemistry, biosensor technology, and chemical analysis techniques. Her expertise has helped shape the next generation of analytical chemists, bridging the gap between scientific research and real-world applications.

๐Ÿ”ฎ Future Contributions and Research Vision

Looking ahead, Prof. Dr. Stella aims to:
๐ŸŒฑ Expand biosensor applications in early disease detection and precision medicine.
๐Ÿ”ฌ Develop next-generation nanomaterials for enhanced sensing capabilities.
โ™ป๏ธ Advance sustainable chemical analysis methods to address environmental challenges.
๐Ÿ“˜ Collaborate internationally to drive innovation in electrochemical sensing and biomolecular diagnostics.

๐Ÿ“–Notable Publications

Study of interactions between DNA-ethidium bromide (EB) and DNA-acridine orange (AO), in solution, using hanging mercury drop electrode (HMDE)

Authors: IC Gherghi, ST Girousi, AN Voulgaropoulos, R Tzimou-Tsitouridou

Journal: Talanta

Year: 2003

pH: Principles and measurement

Authors: S Karastogianni, S Girousi, S Sotiropoulos

Journal: Encyclopedia of Food and Health

Year: 2016

Determination of Cd, Co, Cr, Cu, Fe, Ni and Pb in milk, cheese, and chocolate

Authors: I Karadjova, S Girousi, E Iliadou, I Stratis

Journal: Microchimica Acta

Year: 2000

Sensitive detection of cyclophosphamide using DNA-modified carbon paste, pencil graphite and hanging mercury drop electrodes

Authors: P Palaska, E Aritzoglou, S Girousi

Journal: Talanta

Year: 2007

An Electrochemical Sensor Based on Reduced Graphene Oxide, Gold Nanoparticles and Molecular Imprinted Overโ€oxidized Polypyrrole for Amoxicillin Determination

Authors: H Essousi, H Barhoumi, S Karastogianni, ST Girousi

Journal: Electroanalysis

Year: 2020