T. Syeda Jeelani Basri | Industrial Chemistry | Women Researcher Award

Dr. T. Syeda Jeelani Basri | Industrial Chemistry | Women Researcher Award

Associate Professor | G. Pullaiah College of Engineering & Technology | India

Dr. Syeda Jeelani Basri, M.Sc., Ph.D., is a highly accomplished chemist and academician with over 15 years of teaching and research experience in chemistry, nanoscience, and pharmaceutical sciences. She obtained her Ph.D. in Chemistry from Jawaharlal Nehru Technological University, India, focusing on the phytochemical and spectral analysis of medicinal herbs, under the guidance of Prof. G. V. Subba Reddy. Her research integrates organic, inorganic, material, and pharmaceutical chemistry, with a particular emphasis on green chemistry, nanotechnology, and natural product synthesis. Dr. Basri has made notable contributions in phytochemical extraction, characterization, and the synthesis of bioactive compounds using eco-friendly methodologies. Her scientific work is reflected in 21 research publications, including SCI, Scopus, IEEE, and UGC Care-listed journals, alongside two granted patents in green process chemistry and polyphenol enhancement in edible products. Her recent Scopus-indexed works highlight the green synthesis of gold nanoparticles, the development of CuMn₂O₄/MnO₂/MWCNT nanohybrids for supercapacitors, and AI-based pharmaceutical design demonstrating her interdisciplinary expertise bridging chemistry, artificial intelligence, and environmental applications. In addition, her IEEE publication on machine learning for friction and wear analysis underscores her engagement in computational materials science. Dr. Basri has authored three books, presented at international and national conferences, and has been actively involved in institutional leadership roles such as NAAC Criterion 3 In-charge, IQAC member, and R&D coordinator. A lifetime member of the Indian Society for Radiation and Photochemical Sciences, she also serves on the editorial board of the Glacier Journal of Scientific Research. Recognized with the prestigious Adarsh Vidya Saraswati Rashtriya Puraskar, Dr. Basri continues to advance sustainable innovations in green chemistry, phytopharmaceuticals, and nanomaterials, combining analytical precision with a passion for environmentally responsible scientific progress.

Profiles : Scopus | ORCID | Google Scholar

Featured Publications

Basri, T. S. J. (2025). Facile green synthesis of gold nanoparticles using Catunaregam spinosa extract for environmental remediation and antimicrobial activity. Chemistry Select, 10, 1–14.

Basri, T. S. J. (2025, September 26). Synergistic CuMn₂O₄/MnO₂/MWCNT nanohybrid for ultra-stable and high-energy asymmetric supercapacitors. Journal of Porous Materials.

Basri, T. S. J. (2025). Artificial intelligence for drug discovery: Accelerating the development of new pharmaceuticals. Web of Conferences, 76, 01010.

Maria Zednikova | Chemical Engineering | Best Researcher Award

Dr. Maria Zednikova | Chemical Engineering | Best Researcher Award

Institute of Chemical Process Fundamentals of the CAS | Czech Republic

Profiles

Scopus 
Orcid
Google scholar

Early Academic Pursuits

Dr. Mária Zedníková began her academic journey in chemical engineering with a master’s degree followed by a doctoral degree, both from the Institute of Chemical Technology in Prague. Her strong foundational training laid the groundwork for her subsequent focus in multiphase systems, fluid mechanics, and process engineering. These formative years were marked by deep engagement with core engineering principles and practical laboratory experience, which shaped her research orientation toward hydrodynamics and gas-liquid interactions.

Professional Endeavors

Dr. Zedníková’s professional career is deeply rooted in the Institute of Chemical Process Fundamentals (ICPF), where she has steadily progressed from junior researcher to research scientist and eventually to a leadership role as Head of the Department of Chemical Engineering and Head of the Research Group for Multiphase Reactors. Her trajectory reflects both scientific depth and leadership capacity. She has also taken on academic responsibilities as a teacher at the University of Chemistry and Technology in Prague, expanding her influence to the educational sphere. Notably, her international experience includes collaborative research stays in the United Kingdom and Italy, reflecting her commitment to cross-border scientific exchange and cooperation.

Contributions and Research Focus

Dr. Zedníková’s research is centered on multiphase flow systems with a special emphasis on gas-liquid interactions, bubble dynamics, and mass transfer phenomena. Her work delves into the complex behaviors of bubbles and drops in turbulent environments, investigating how these particles deform, break up, and interact with fluid structures. She has developed theoretical models and experimental setups to study hydrodynamics, drop-particle collisions, and surfactant effects on fluid interfaces. Additionally, her research in stirred tank reactors and gas-lift systems addresses crucial industrial applications in chemical processing, biotechnology, and environmental engineering.

Impact and Influence

Her influence is visible both through her scholarly output and her engagement with the broader scientific community. Dr. Zedníková has authored 30 original research papers, the majority of which appear in peer-reviewed, high-impact journals. She has also contributed a chapter to a scientific monograph and holds a registered utility model. Her active presence at international conferences with over 90 contributions demonstrates her role in advancing and disseminating knowledge in her field. Furthermore, her involvement in national and international research projects as both leader and team member has positioned her as a respected figure in collaborative scientific networks.

Academic Citations and Recognition

With an H-index of 14 and nearly 700 citations most of which are from independent researchers Dr. Zedníková has established a significant academic footprint. Her research is regularly cited by peers, which confirms the value and relevance of her work in the scientific community. The Best Poster Award from the European Federation of Chemical Engineering and her active membership in professional societies and scientific committees further highlight her recognition and contributions on both national and European platforms.

Technical Skills

Dr. Zedníková possesses extensive technical expertise in experimental design, fluid flow diagnostics, multiphase reactor modeling, and mass transfer analysis. Her work includes advanced techniques for measuring bubble deformation, analyzing flow regimes, and modeling surfactant behavior in dynamic fluid systems. Her ability to integrate theoretical modeling with experimental validation distinguishes her technical acumen in the chemical engineering domain.

Teaching Experience

As an educator, Dr. Zedníková has taken a leading role in a wide range of chemical engineering subjects. She has conducted lectures and seminars on fluid mechanics, chemical technologies, process projects, and laboratory courses. Her engagement in mentoring includes the supervision of over 20 master’s, bachelor’s, and internship students. This dedication to teaching complements her research activities and ensures knowledge transfer to the next generation of engineers and scientists.

Legacy and Future Contributions

Dr. Zedníková’s career reflects a consistent drive for scientific innovation, education, and leadership. Her multidisciplinary collaborations, international exposure, and applied research make her a role model in the engineering sciences. Looking ahead, her ongoing research on bubble dynamics, reactor hydrodynamics, and surfactant behavior is expected to contribute significantly to chemical process optimization and sustainability. Her involvement in international committees and editorial boards also sets the stage for continued influence in shaping research agendas and policy in chemical engineering.

Notable Publications

  • Dynamic regimes in granular mixing: Effect of sliding friction and stirrer rotational frequency
    Authors: Martin Kozakovic, David Kramolis, Maria Zednikova, Stanislav Parez, Jaromir Havlica
    Journal: Powder Technology
    Year: 2025

  • Size distribution of daughter bubbles or drops resulting from binary breakup due to random initial deformation conditions
    Authors: Maria Zednikova, Petr Stanovsky, Sandra Orvalho
    Journal: Separation and Purification Technology
    Year: 2025

  • Gas phase behaviour in environment of fermentation processes
    Authors: Adrián Žák, Lukáš Valenz, Tomáš Moucha, Maria Zednikova
    Journal: Chemical Engineering Research and Design
    Year: 2025

  • Viscosity influence on hydrodynamics behaviour in a stirred tank reactor
    Authors: Adrián Žák, Mária Zedníková, Tomáš Moucha
    Journal: Chemical Engineering Research and Design
    Year: 2025

  • Surfactant effect on bubble deformation and breakup after interaction with vortex structure
    Authors: Maria Zednikova, Tereza Semlerová, Sandra Orvalho, Jaromir Havlica, Jaroslav Tihon
    Journal: Chemical Engineering Science
    Year: 2025

Conclusion

Dr. Mária Zedníková is a highly accomplished chemical engineering researcher with deep expertise in multiphase flow systems and hydrodynamics. Her balanced portfolio of research, teaching, leadership, and international collaboration reflects a dynamic and impactful career. Her academic and professional journey illustrates a strong commitment to advancing both fundamental science and its practical applications. She stands out as a leading figure in her field, with a legacy that is poised to grow in the coming years.

Sneha C | Catalysis | Women Researcher Award

Ms. Sneha C | Catalysis | Women Researcher Award

NIT Karnataka, India

👨‍🎓Profiles

🎓 Early Academic Pursuits

Sneha C, from Elathur, Calicut, Kerala, has maintained an excellent academic record since her early education. She began with strong performances in school, which led her to pursue a Bachelor’s degree in Electronics and Communication Engineering at Government College of Engineering, Kannur. Motivated by a deep interest in advanced science and technology, she then undertook a Master’s program in Nanotechnology at NIT Karnataka. Her academic path reflects a clear progression toward interdisciplinary expertise at the intersection of electronics and materials science.

👩‍💼 Professional Endeavors

Sneha has been actively involved in the academic field, teaching at a private coaching institute where she mentors students in engineering disciplines. In addition to her instructional responsibilities, she has also worked as a Teaching Assistant in nanotechnology, supporting course delivery and student engagement in advanced topics.

🧪 Contributions and Research Focus

Her academic journey includes a range of impactful projects. During her undergraduate studies, she developed a Heartbeat Analyzer using LabVIEW, applying electronic systems to biomedical contexts. For her postgraduate research, she focused on the influence of substrate temperature on the characteristics of ZnO and AZO thin films created by thermal vapor deposition. Currently pursuing doctoral research, her focus is on the design and fabrication of gas sensors, investigating how material properties and doping techniques affect sensor behavior and sensitivity.

🌐 Impact and Influence

Sneha has contributed significantly to scientific literature through multiple peer-reviewed publications. She has authored articles in prestigious journals including Springer’s Journal of Materials Science: Materials in Electronics, and Elsevier’s Sensors and Actuators A: Physical and Surfaces and Interfaces. Her work on thin-film nanomaterials and sensor technology is well-regarded, and she serves as a peer reviewer for the Journal of Materials Science: Materials in Electronics, demonstrating her recognized expertise in the field.

📊 Academic Cites and Recognition

Her commitment to academic excellence is further reflected in her achievements in national-level competitive examinations. She has earned accolades for her technical presentations, including the Best Oral Presentation Award at an international conference hosted at NIT Calicut. These achievements underscore her analytical skills and effective communication of complex research.

💻 Technical Skills

Sneha possesses strong technical competencies, including programming knowledge in C and MATLAB, and is adept with Windows and Ubuntu operating systems. Her core areas of interest lie in electronics, nanotechnology, thin-film materials, and sensor devices, aligning with her academic background and research contributions.

🧑‍🏫 Teaching Experience

With extensive teaching experience, Sneha has guided numerous students in understanding complex concepts in electronics and nanoscience. Her involvement in academic instruction as a teaching assistant, along with her mentoring roles, highlights her dedication to cultivating the next generation of engineers and researchers.

🏅 Leadership, Outreach, and Extracurriculars

Sneha has actively contributed to academic communities beyond the classroom. She served as a class representative during both her undergraduate and postgraduate studies and was involved in organizing key technical events. She played integral roles in Explore, the technical fest at her engineering college, and led the publication and program committees for an international conference at NIT Calicut. These leadership activities highlight her teamwork, coordination, and communication skills.

🔮 Legacy and Future Contributions

Sneha C is shaping her legacy as a researcher at the intersection of electronics and nanotechnology. With a focus on solving real-world problems through innovation in sensor technologies, her future contributions are expected to advance environmental and biomedical monitoring systems. As an educator and scholar, she is committed to fostering academic excellence and scientific progress in the years ahead.

📖Notable Publications

  • Antimony doped tin oxide MOS sensors for hydrogen detection at low concentrations
    Contributors: C. Sneha, V.K. Baiju, S. Varghese
    Journal: Sensors and Actuators A: Physical
    Year: 2023

  • Effect of substrate temperature on the characteristics of ZnO films produced by a combination of thermal vapor deposition and oxidation processes
    Contributors: C. Sneha, C. Prabukumar, M. Jayalakshmi, S. Bhat, K. Udaya Bhat
    Journal: Journal of Materials Science: Materials in Electronics
    Year: 2017

  • Structural and morphological changes with substrate heating in zinc films synthesized by thermal vapor deposition technique
    Contributors: C. Sneha, C. Prabukumar, M. Jayalakshmi, K.U. Bhat
    Journal: Journal of Materials Science: Materials in Electronics
    Year: 2017

  • Nickel-sensitized Sb:SnO₂ thin films for enhanced room temperature hydrogen gas sensing
    Contributors: C. Sneha, S. Varghese
    Journal: Surfaces and Interfaces
    Year: 2025