IMAD SHARQI | Materials Chemistry | Innovative Research Award

Innovative Research Award

IMAD SHARQI
University of Tunis El Manar

IMAD SHARQI
Affiliation University of Tunis El Manar
Country Tunisia
Scopus ID 59662085200
Documents 2
Citations 5
h-index 1
Subject Area Materials Chemistry
Event International Analytical Chemistry Awards
Scopus Author Profile

IMAD SHARQI is a researcher affiliated with the University of Tunis El Manar in Tunisia, with a recorded research profile in Materials Chemistry. The supplied bibliometric information identifies two Scopus-indexed documents, five citations, and an h-index of one. These indicators provide a concise quantitative description of the research record available through the supplied author information.

Abstract

This academic recognition profile examines IMAD SHARQI in the context of the Innovative Research Award. The supplied record associates the researcher with the University of Tunis El Manar and the subject area of Materials Chemistry. Scopus information supplied for this profile reports two documents, five citations, and an h-index of one. Award suitability should therefore be assessed using both bibliometric evidence and the substantive quality, originality, and relevance of the underlying research.

Keywords

Materials Chemistry; Analytical Chemistry; Innovative Research; Scientific Publications; Research Impact; Scopus; University of Tunis El Manar; Tunisia.

Introduction

Materials Chemistry investigates the preparation, characterization, properties, and applications of chemical materials across diverse scientific contexts. Analytical Chemistry contributes complementary methods for identifying, measuring, and interpreting chemical constituents and material properties. Modern research in these areas commonly combines instrumental analysis, materials characterization, chemical synthesis, and quantitative interpretation.The relationship between these disciplines makes documented methodological rigor and reproducibility important considerations when evaluating innovative research. [2]

Research Profile

The supplied profile places IMAD SHARQI at the University of Tunis El Manar, Tunisia, within Materials Chemistry. The recorded Scopus Author ID is 59662085200, providing an identifier for the bibliometric record supplied for this article. Two documents and five citations are reported, while the h-index is given as one in the provided profile information. Because bibliometric indicators can change over time, the figures should be regarded as a dated profile snapshot rather than permanent measures. [1]

Research Contributions

The available information supports identifying Materials Chemistry as the principal subject area associated with the supplied researcher record.
A detailed evaluation of individual scientific contributions requires examination of the actual publications, methods, datasets, results, and citations associated with the researcher. In materials-oriented research, contribution can involve development of compositions, characterization strategies, analytical methods, or interpretation of structure–property relationships. Accordingly, innovation should be evaluated from documented scholarly outputs rather than inferred solely from publication counts or citation indicators. [3]

Publications

The supplied bibliometric record indicates two documents indexed in Scopus for the researcher profile. No publication titles, journal names, publication years, author-order information, or article-level DOI identifiers were supplied with the input data. For this reason, specific publication claims are not attributed to IMAD SHARQI without independent article-level verification. The Scopus author record should be consulted for the current indexed publication list and bibliometric details. [1]

Research Impact

The supplied record reports five citations and an h-index of one, indicating measurable citation activity within the indexed record. Citation indicators are useful for contextual assessment but do not independently establish originality, methodological quality, societal value, or long-term scientific influence. Responsible research assessment recommends considering qualitative evidence alongside quantitative indicators, particularly for researchers with relatively small publication portfolios. For an innovation-focused award, the novelty and significance of individual contributions should therefore receive substantial consideration. [4]

Award Suitability

IMAD SHARQI has a documented affiliation with a recognized Tunisian university and a Scopus-indexed research record in Materials Chemistry. These characteristics establish a relevant academic profile for consideration in a scientific recognition process connected with analytical and materials research. However, the supplied metrics alone are insufficient to establish award-level innovation, and no claim of selection or receipt of the award is made here.

Conclusion

The available information presents IMAD SHARQI as a University of Tunis El Manar researcher associated with Materials Chemistry. The supplied Scopus indicators comprise two documents, five citations, and an h-index of one, providing a limited but verifiable bibliometric snapshot. The profile is potentially relevant to an innovation-oriented scientific award, particularly where materials and analytical chemistry are within the evaluation scope.

References

  1. Elsevier. (n.d.). Scopus author details: IMAD SHARQI, Author ID 59662085200. Scopus.
    https://www.scopus.com/pages/authors/59662085200
  2. IUPAC. (n.d.). Compendium of Chemical Terminology (Gold Book). International Union of Pure and Applied Chemistry.
    https://goldbook.iupac.org/
  3. National Research Council. (2007). Innovation in Analytical Chemistry and Materials Research. National Academies Press.
    https://doi.org/10.17226/11926
  4. Hicks, D., Wouters, P., Waltman, L., de Rijcke, S., & Rafols, I. (2015). Bibliometrics: The Leiden Manifesto for research metrics. Nature, 520, 429–431.
    https://doi.org/10.1038/520429a
  5. UNESCO. (2021). UNESCO Recommendation on Open Science. United Nations Educational, Scientific and Cultural Organization.
    https://unesdoc.unesco.org/ark:/48223/pf0000379949

Kichang Kwon | Materials Chemistry | Research Excellence Award

Dr. Kichang Kwon | Materials Chemistry | Research Excellence Award

Korea Research Institute of Standards and Science | South Korea

Kichang Kwon is a Principal Research Scientist at the Korea Research Institute of Standards and Science (KRISS), specializing in chemical and materials metrology and low-dimensional nanomaterials. He earned his Ph.D. in Materials Science from Seoul National University and completed postdoctoral research at the National University of Singapore. Since joining KRISS, his research has focused on synthesizing and integrating two-dimensional nanomaterials for nanoelectronic devices, including chemoresistive gas sensors, neuromorphic electronics, and electrocatalysts for alkaline anion exchange membrane water electrolysis, advancing next-generation sensing and sustainable energy technologies.

Citation Metrics (Scopus)

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Citations
4,417

Documents
81

h-index
37

Citations

Documents

h-index

View Scopus Profile View ORCID Profile View Google Scholar Profile

Featured Publications

Muhammad Kashif Majeed | Materials Chemistry | Best Researcher Award

Dr. Muhammad Kashif Majeed | Materials Chemistry | Best Researcher Award

National University of Science and Technology, Pakistan

👨‍🎓Profiles

📚 Early Academic Pursuits

Dr. Muhammad Kashif Majeed’s academic journey reflects a strong foundation in chemistry, especially materials science and electrochemistry. His studies began with a Bachelor's degree in Chemistry from Gomal University, Pakistan, followed by a Master’s in the same field. His educational path continued with a Ph.D. in Chemistry (Materials/Inorganic) from Shandong University, China, where he focused on the synthesis and electrochemical performances of Si/C-based anode materials for lithium-ion batteries. His thesis, guided by Professors Yang Jian and Xiaojian Ma, provided significant contributions to the development of energy storage solutions.

🧑‍🔬 Professional Endeavors

Since 2023, Dr. Majeed has been balancing multiple prestigious roles. He is an Assistant Professor in the Department of Chemistry at the National University of Science and Technology, Islamabad, Pakistan. He also holds a Senior Researcher position in Mechanical Engineering at the University of Texas at Dallas, Richardson, Texas, U.S. His career trajectory includes prestigious postdoctoral experiences at globally recognized institutions, including the University of Texas at Arlington and the Dalian Institute of Chemical Physics, Chinese Academy of Sciences. These roles have enabled him to strengthen his expertise in materials science, catalysis, and energy storage technologies.

🔬 Contributions and Research Focus

Dr. Majeed’s research interests primarily lie in materials chemistry, particularly focusing on lithium-ion battery development, nanomaterials, and electrochemical systems. His work on controllable synthesis techniques for Si/C-based anode materials has had a profound impact on the field of energy storage. Additionally, he has conducted advanced research in materials synthesis, crystal analysis, and electrochemical analysis techniques such as cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and galvanostatic charge/discharge tests. His research has contributed significantly to the development of efficient, sustainable materials for energy storage systems, thus advancing clean energy technologies.

🌍 Impact and Influence

Dr. Majeed’s research has been pivotal in enhancing our understanding of electrochemical energy storage materials, especially those that involve novel materials like Si/C anodes. His work has been recognized in several top-tier journals such as ACS Applied Materials Interfaces, ACS Omega, Materials, and Sustainable Energy and Fuels. As an editorial board member and reviewer for prestigious journals, he plays an integral role in shaping future scientific discourse and advancing the materials science community. His collaborations across continents further amplify his global impact in the field.

📑 Academic Cites and Publications

Dr. Majeed’s publications in leading scientific journals have garnered significant attention in the materials science and electrochemistry communities. His research is frequently cited, highlighting its importance in advancing battery technology and energy storage solutions. As an active journal reviewer for high-impact publications such as ACS Applied Materials Interfaces and Chemistry-A European Journal, he not only contributes to scientific literature but also ensures the high quality and rigor of published research in his field.

🛠️ Technical Skills

Dr. Majeed possesses a diverse skill set, including proficiency in advanced materials characterization techniques such as X-ray diffraction (XRD), transmission electron microscopy (TEM), and Fourier transform infrared spectroscopy (FT-IR). His expertise extends to the use of computational tools for density functional theory (DFT), material modeling (ChemCraft, Gauss view), and nano-materials synthesis via various methods like sol-gel, hydrothermal, and solvothermal. He is highly proficient in electrochemical analysis methods, making him a versatile researcher capable of addressing complex material challenges.

👨‍🏫 Teaching Experience and Mentorship

As an Assistant Professor at the National University of Science and Technology, Dr. Majeed is involved in teaching advanced chemistry courses, where he imparts knowledge in materials science and electrochemistry. His teaching approach integrates his deep research experience, offering students a comprehensive understanding of both theory and practical applications in chemistry and materials science. Dr. Majeed’s mentorship extends beyond the classroom, as he actively guides research projects, helping students navigate complex scientific problems and develop critical skills for their future careers.

🏆 Legacy and Future Contributions

Dr. Majeed’s future contributions to the fields of energy storage and materials science are poised to have a lasting impact. His work in developing high-performance, sustainable materials for energy applications will continue to drive innovation in battery technologies. Moreover, his collaborative research efforts at global institutions suggest that he will remain at the forefront of scientific advancements, mentoring the next generation of researchers and contributing to a sustainable energy future. As he continues his academic career, Dr. Majeed is likely to leave a significant legacy in both research and education, inspiring future advancements in materials science and engineering.

📖Notable Publications

Interfacial Engineering of Polymer Solid‐State Lithium Battery Electrolytes and Li‐Metal Anode: Current Status and Future Directions

Authors: Muhammad Kashif Majeed, Arshad Hussain, Ghulam Hussain, Muhammad Umar Majeed, Muhammad Zeeshan Ashfaq, Rashid Iqbal, Adil Saleem

Journal: Small

Year: 2024-12

Designing Nanocomposite-Based Electrochemical Biosensors for Diabetes Mellitus Detection: A Review

Authors: Xiang Guo, Jiaxin Wang, Jinyan Bu, Huichao Zhang, Muhammad Arshad, Ayesha Kanwal, Muhammad K. Majeed, Wu-Xing Chen, Kuldeep K Saxena, Xinghui Liu

Journal: ACS Omega

Year: 2024-07-16

Ni-rich cathode evolution: exploring electrochemical dynamics and strategic modifications to combat degradation

Authors: Adil Saleem, Leon L. Shaw, Rashid Iqbal, Arshad Hussain, Abdul Rehman Akbar, Bushra Jabar, Sajid Rauf, Muhammad Kashif Majeed

Journal: Energy Storage Materials

Year: 2024-05

Co3(hexaamino dipyrazinoquinoxaline)2: Highly conductive and robust two-dimensional Aza-based cobalt metal-organic framework as an efficient electrocatalyst for acidic oxygen evolution

Authors: Rashid Iqbal, M. Shahzaib Naeem, Muhammad Ahmad, Arshad Hussain, Abdul Rehman Akbar, Maryam Kiani, M. Zeeshan Ashfaq, Sajid Rauf, Kareem Yusuf, Muhammad K. Majeed et al.

Journal: Journal of Power Sources

Year: 2024-02

Boosting the crystallinity of novel two-dimensional hexamine dipyrazino quinoxaline-based covalent organic frameworks for electrical double-layer supercapacitors

Authors: Rashid Iqbal, Muhammad Kashif Majeed, Arshad Hussain, Aziz Ahmad, Muhammad Ahmad, Bushra Jabar, Abdul Rehman Akbar, Sajjad Ali, Sajid Rauf, Adil Saleem

Journal: Materials Chemistry Frontiers

Year: 2023

Simulation Analysis of Novel Integrated LNG Regasification-Organic Rankine Cycle and Anti-Sublimation Process to Generate Clean Energy

Authors: Suri, S.U.K.; Majeed, M.K.; Ahmad, M.S.

Journal: Energies

Year: 2023