Birendra Kumar | Chemistry | Innovative Research Award

Innovative Research Award

Birendra Kumar — Govt. Rajmata Vijayaraje Sindhiya Girls College, India.

Birendra Kumar
Affiliation Govt. Rajmata Vijayaraje Sindhiya Girls College
Country India
Scopus ID 16144351800
Documents 42
Citations 393
h-index 11
Subject Area Chemistry
Event Scientific World Research Awards

Birendra Kumar is a researcher and his academic profile is associated with Chemistry research and documented scholarly activity. Birendra Kumar’s research is situated within Chemistry, with scholarly activity documented through indexed research records. [1]

Abstract

Birendra Kumar is presented as a Chemistry researcher affiliated with Govt. Rajmata Vijayaraje Sindhiya Girls College. The scholarly information records 42 documents, 393 citations and an h-index of 11. These indicators provide a concise description of the documented research profile. [1]

Keywords

Chemistry; academic research; chemical sciences; scholarly publications; research impact; bibliometrics; Scopus; citation analysis; Innovative Research Award; Scientific World Research Awards.

Introduction

Chemistry research addresses the composition, properties and transformations of matter through experimental and theoretical approaches. Kumar’s profile identifies Chemistry as the principal subject area. The indexed information can therefore be used to describe his academic research activity. [1]

Research Profile

The supplied profile associates Birendra Kumar with Govt. Rajmata Vijayaraje Sindhiya Girls College in India and identifies Chemistry as his subject area. His Scopus identifier provides a specific route for reviewing the indexed author record. Bibliometric values remain dependent on database updates. [2]

Research Contributions

The profile information supports describing Kumar’s academic activity through his Chemistry affiliation and indexed publication record. Research contributions may be evaluated using individual publications, methodological approaches, collaborations and citation evidence. Detailed contribution assessment should rely on the underlying scholarly publications. [3]

Publications

The Scopus profile for this page records 42 documents. Individual publication details should be verified directly through the author’s indexed record and publisher databases. DOI records provides persistent identifiers for scholarly publications. [2]

Research Impact

The bibliometric record reports 42 documents, 393 citations and an h-index of 11. These measures describe publication and citation activity within the relevant indexing system. They should be interpreted with the database date, subject coverage and author-profile accuracy taken into consideration. [2]

Award Suitability

The documented Chemistry affiliation, indexed research activity and reported bibliometric indicators provide information relevant to an academic recognition profile. The Innovative Research Award is associated with the Scientific World Research Awards event. Final eligibility and selection depend on the official award criteria and evaluation process.

Conclusion

Birendra Kumar’s academic profile is associated with Chemistry research at Govt. Rajmata Vijayaraje Sindhiya Girls College. The Scopus indicators provide measurable bibliometric context for his scholarly record. Further evaluation can be based on verified publications and the applicable award requirements. [1]

References

  1. Elsevier. (n.d.). Scopus Author Details: Birendra Kumar, Author ID 16144351800. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=16144351800
  2. Lakra, J., Tikariha Jangde, D., Kumar, B., & Ghosh, K. K. (2022). Micellization properties of quinolinium based surfactants: 1-alkylquinolinium bromide and 6-hydroxy-1-alkylquinolinium-bromide by fluorimetry, conductivity and surface tension measurements and its parameters. Chemical Thermodynamics and Thermal Analysis, 8, 100089.
    https://doi.org/10.1016/j.ctta.2022.100089
  3. Lakra, J., Tikariha, D., & Kumar, B. (2022). Significance of dimeric surfactant on kinetic study of organophosphorus compounds. International Journal of Chemical Kinetics, 54(8), 461–469.
    https://doi.org/10.1002/kin.21574
  4. Kumar, B., Tikariha, D., Ghosh, K. K., Barbero, N., & Quagliotto, P. (2013). Effect of polymers and temperature on critical micelle concentration of some gemini and monomeric surfactants. The Journal of Chemical Thermodynamics, 62, 178–185.
    https://doi.org/10.1016/j.jct.2013.03.006
  5. Kumar, B., Tikariha, D., Ghosh, K. K., Barbero, N., & Quagliotto, P. (2013). Kinetic study on effect of novel cationic dimeric surfactants for the cleavage of carboxylate ester. Journal of Physical Organic Chemistry, 26(8), 626–631.
    https://doi.org/10.1002/poc.3141

 

Hongqiang Wang | Chemistry | Innovative Research Award

Innovative Research Award

Hongqiang Wang
Affiliation Beihua University
Country China
Scopus ID 57189511669
Documents 35
Citations 562
h-index 16
Subject Area Chemistry
Event Scientific World Research Awards
ORCID 0000-0001-6882-0476

Hongqiang Wang — Beihua University, China

Hongqiang Wang is a chemistry researcher, whose documented research includes quantum chemistry, and nonlinear optics. His ORCID record identifies his Faculty of Chemistry appointment and records research works spanning computational and molecular chemistry. [1]

Abstract

This academic recognition profile presents the research record with particular emphasis on nonlinear optical materials, molecular electronic structure, and carborane chemistry. The available scholarly record documents sustained publication activity and multiple studies using theoretical and computational approaches. [2]

Keywords

Quantum Chemistry; Nonlinear Optics; Carborane; Organometallic Complex; Exciton Dynamics; Density Functional Theory; Molecular Switching; Hyperpolarizability.

Introduction

Wang’s research profile is centered on understanding molecular structure–property relationships relevant to optical and electronic phenomena. His documented publications examines nonlinear optical responses, donor–acceptor architectures, molecular switches, metal complexes, and carborane-containing systems. [3]

Research Profile

The ORCID record lists Beihua University employment from 2020 to the present and doctoral education at Northeast Normal University from 2015 to 2020. The profile identifies quantum chemistry, nonlinear optics, carborane, organometallic complexes, and exciton dynamics among his research keywords. [1]

Research Contributions

His documented work includes investigations of molecular architectures, hyperpolarizability, photoswitching, and nonlinear optical behavior. Recent studies include donor–acceptor Stenhouse adducts and carborane-based systems, illustrating continued interest in structure-dependent optical response. [4]

Publications

The supplied ORCID record lists 36 works, including publications in Chemistry – A European Journal, Dyes and Pigments, Theoretical Chemistry Accounts, Organic Electronics, and The Journal of Physical Chemistry C. Representative studies address nonlinear optical responses, molecular switching, donor–acceptor chemistry, and metal-containing molecular architectures. [2]

Research Impact

The supplied researcher metrics report 35 documents, 562 citations, and an h-index of 16. These figures provide a bibliometric snapshot associated with the supplied Scopus profile and should be interpreted with reference to the database’s indexing and update practices. [5]

Award Suitability

The documented research publication record provide a basis for consideration under an Innovative Research Award in chemistry. His work connects computational chemistry with nonlinear optical phenomena and molecular design, while the publication record demonstrates research activity across several related areas. [3]

Conclusion

Hongqiang Wang’s documented academic profile reflects sustained research in chemistry, particularly quantum chemical studies and nonlinear optical systems. The combination of research themes, peer-reviewed publications, and reported bibliometric indicators supports his presentation for academic recognition through the Scientific World Research Awards. [1]

References

  1. ORCID. (2026). Hongqiang Wang: ORCID record 0000-0001-6882-0476. ORCID.
    https://orcid.org/0000-0001-6882-0476
  2. Elsevier. (n.d.). Scopus author details: Hongqiang Wang, Author ID 57189511669. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57189511669
  3. Kang, H., Ye, J., Wang, H., Zhang, Y., & Qiu, Y. (2021). DFT study of effect of substituents on second-order NLO response of novel BODIPY dyes. Theoretical Chemistry Accounts.
    https://doi.org/10.1007/s00214-021-02758-5
  4. Wen, J.-Q., Tao, R., Li, J.-H., Miao, Y., Zhang, J.-Y., Qiu, Y.-Q., Wang, H.-Q., & Liu, C.-G. (2026). Tuning Second-Order Nonlinear Optical Properties via Electronic Interaction Engineering. Chemistry – A European Journal.
    https://doi.org/10.1002/chem.71362
  5. Zhang, Y., Wang, H.-Q., Zhao, Y.-Y., & Qiu, Y.-Q. (2020). Novel cyclic and linearizing cyclic Pd(II) nanohoop-based coordination complexes achieving nonlinear optical activity transparency trade-off optimization. Organic Electronics.
    https://doi.org/10.1016/j.orgel.2019.105564

Hossein Molavi | Chemistry | Research Excellence Award

Assist. Prof. Dr. Hossein Molavi | Chemistry | Research Excellence Award

Faculty member | Institute for Advanced Studies in Basic Sciences | Iran

Assist. Prof. Dr. Hossein Molavi is an emerging and highly influential researcher in the field of metal–organic frameworks (MOFs), advanced porous materials, and adsorption-based environmental technologies. With over 4,700 citations across 56 publications and an impressive h-index of 39, his work significantly contributes to the design, synthesis, and application of functional MOF structures for sustainable solutions.His research primarily focuses on the synthesis, modification, and performance evaluation of cerium- and zirconium-based MOFs, including Ce-MOFs, UiO-66-Ce, and UiO-66-NH₂ frameworks. Dr. Molavi extensively investigates how parameters such as reaction time, exchange solvents, and synthesis conditions influence the morphological, structural, and adsorption characteristics of MOFs. A major part of his work explores water-borne and room-temperature MOFs, aligning with green chemistry principles and enabling eco-friendly material development.His research impact is highlighted through studies on organic dye removal, water purification, and environmental remediation, where he evaluates adsorption capacities, stability profiles, and mechanism pathways of engineered MOF adsorbents. He also contributes to understanding amorphous MOFs, addressing synthesis strategies, structural properties, and their expanding applications in catalysis, sensing, pollutant capture, and energy materials.Dr. Molavi’s collaborative work with international scholars and his growing portfolio of high-impact journal articles—including publications in Langmuir, Scientific Reports, and Microporous and Mesoporous Materials—demonstrate his leadership in MOF research. His contributions continue to shape the scientific understanding of advanced porous materials for sustainable chemical and environmental engineering applications.

Profiles: Scopus | ORCID | Google Scholar | ResearchGate | LinkedIn

Featured Publications

Molavi, H. (2025). Cerium-based metal-organic frameworks: Synthesis, properties, and applications. Coordination Chemistry Reviews, 527, 216405.

Molavi, H., & Saeedi, S. (2025). Water-born MOFs at room temperature as green adsorbents. Microporous and Mesoporous Materials, 113809.

Molavi, H., Mirzaei, K., Jafarpour, E., Mohammadi, A., Salimi, M. S., Rezakazemi, M., … Aminabhavi, T. M. (2024). Wastewater treatment using nanodiamond and related materials. Journal of Environmental Management, 349, 119349.

Molavi, H., & Salimi, M. S. (2023). Green synthesis of cerium-based metal–organic framework (Ce-UiO-66 MOF) for wastewater treatment. Langmuir.

Molavi, H., Mirzaei, K., Barjasteh, M., Rahnamaee, S. Y., Saeedi, S., Hassanpouryouzband, A., & Rezakazemi, M. (2024). 3D-printed MOF monoliths: Fabrication strategies and environmental applications. Nano-Micro Letters, 16(1), 272.

Assist. Prof. Dr. Hossein Molavi’s pioneering research on advanced metal–organic frameworks and green adsorbent technologies drives transformative progress in sustainable water purification, environmental remediation, and next-generation functional materials. His work bridges fundamental chemistry with real-world industrial applications, providing scalable, eco-friendly solutions that support cleaner ecosystems and global innovation in environmental engineering. Through high-impact publications and material breakthroughs, he continues to shape the future of sustainable technologies for a healthier and more resilient world.