Han Jie | Chemistry | Innovative Research Award

Innovative Research Award

                        Han Jie
Affiliation Shaanxi University of Technology
Country China
Scopus ID 56915064100
Documents 11
Citations 407
h-index 10
Subject Area Chemistry
Event International Research Chemistry Awards
ORCID 0000-0002-5263-2558

Han Jie is a researcher affiliated with Shaanxi University of Technology whose scholarly work has contributed to contemporary developments in chemistry through peer-reviewed publications and measurable research impact. Citation metrics, publication records, and international academic visibility demonstrate sustained engagement with scientific research and collaboration, supporting recognition within the research community.[1]

Abstract

Han Jie is recognized for scholarly activities in chemistry supported by publications, citation performance, and measurable scientific influence. Research outputs demonstrate continued participation in advancing chemical science through experimental investigation, collaborative research, and dissemination in peer-reviewed journals. With an established Scopus profile containing multiple indexed publications and a notable citation record, the researcher contributes to scientific understanding while promoting academic excellence. The documented research impact reflects sustained productivity, responsible scholarship, and engagement with the international scientific community, making the academic profile suitable for consideration within competitive research recognition programs and international award initiatives.[1]

Keywords

Chemistry, Scientific Research, Materials Science, Academic Publications, Scopus Author, Research Excellence, Citation Impact, International Collaboration, Innovative Research Award, Chemical Sciences.[3]

Introduction

Scientific recognition reflects consistent contributions to knowledge creation, publication quality, and measurable research influence. Han Jie has developed a research profile characterized by peer-reviewed publications and sustained academic engagement, supporting advancements in chemistry while strengthening institutional and international scientific collaboration.[1]

Research Profile

Affiliated with Shaanxi University of Technology, Han Jie maintains an active academic profile indexed in Scopus under Author ID 56915064100. The profile records eleven indexed publications, more than four hundred citations, and an h-index of ten, demonstrating consistent scholarly productivity.[1]

Research Contributions

Research contributions focus on advancing chemical knowledge through systematic investigation, publication, and collaboration. The documented work supports scientific understanding while encouraging innovation, methodological improvement, and interdisciplinary communication across the broader chemistry research community through internationally accessible scholarly literature.[2]

Publications

The researcher has authored eleven Scopus-indexed publications contributing to chemical sciences. These publications collectively demonstrate sustained academic productivity and provide evidence of scientific dissemination through recognized journals, strengthening the visibility and accessibility of research findings within the international scientific community.[4]

Research Impact

With 407 citations and an h-index of 10, the available bibliometric indicators demonstrate meaningful academic influence. Citation performance indicates that published research has been referenced by other scholars, reflecting relevance, scientific credibility, and continued engagement within chemistry-related research disciplines.[2]

Award Suitability

The combination of peer-reviewed publications, measurable citation impact, institutional affiliation, and international research visibility supports consideration for the Innovative Research Award. The academic profile aligns with evaluation criteria emphasizing research quality, scholarly contribution, scientific influence, and professional excellence.[3]

Conclusion

Han Jie’s documented academic achievements illustrate a consistent commitment to chemistry research through publication, collaboration, and measurable scholarly impact. The available evidence supports recognition of scientific contributions while highlighting continued potential for future advancements within the international research community.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Han Jie, Author ID 56915064100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56915064100
  2. International Research Chemistry Awards. (2026). International Research Chemistry Awards.
    https://researchchemistry.org
  3. Han, J., Wang, T., Liang, Y., et al. (2017). Transition-metal-free photoinduced intramolecular annulation of 2,3-di(hetero)arylchromen-4-one. Organic Letters, 19(13), 3552–3555.
    https://doi.org/10.1021/acs.orglett.7b01531
  4. Han, J., & Zhang, Z.-M. (2024). (Radio)Fluorination reactions for the synthesis of aryl fluorides: Recent advances and perspectives. European Journal of Organic Chemistry, e202400502.
    https://doi.org/10.1002/ejoc.202400502

 

Parvaiz Ahmad Dar | Organic Synthesis and Medicinal Chemistry | Young Scientist Award

Dr. Parvaiz Ahmad Dar | Organic Synthesis and Medicinal Chemistry | Young Scientist Award

University of Kashmir Srinagar Jammu and Kashmir India | India

A dedicated researcher in chemistry with expertise in organic synthesis, drug design, and computational studies, Organic Synthesis and Medicinal Chemistry focused on developing innovative organic molecules with biomedical and photoluminescent applications. Possesses strong experience in synthesizing and characterizing novel compounds, alongside proficiency in advanced analytical techniques such as spectroscopic methods and molecular characterization tools. Demonstrates solid knowledge of computational chemistry, including density functional theory, molecular modeling, docking, and in silico screening for drug discovery. Research work also extends to carbon nanodots, exploring their photoluminescent properties and potential biomedical applications. Additional exposure to phytochemistry of medicinal plants highlights an interdisciplinary approach toward discovering bioactive compounds. Skilled in laboratory practices, data interpretation, and experimental design, with foundational experience in cell culture and microbial assays.Has contributed to academic development through supervising postgraduate research projects and conducting laboratory instruction, fostering both theoretical understanding and practical skills in chemistry. Actively engaged in advancing research outcomes with a focus on impactful publications, collaborative projects, and innovative scientific contributions. Combines experimental and computational approaches to address complex chemical and biological challenges, reflecting a strong commitment to scientific advancement and applied research.

Citation Metrics (Google Scholar)

400
300
200
100
0

Citations
260

Documents
9

h-index
6

Citations

Documents

h-index


View Google Scholar Profile

Featured Publications

Assoc Prof Dr. Guangfu Li |  Organic Chemistry |  Best Researcher Award

Assoc Prof Dr. Guangfu Li |  Organic Chemistry |  Best Researcher Award

Assoc Prof Dr. Guangfu Li, Heilongjiang University, China

Professional Profile

Scopus

🎓 Academic and Professional Background

Dr. Guangfu Li received his Ph.D. from Northeast Normal University and started his academic career there as a Lecturer in 2018. Since 2024, he has been contributing to the School of Chemistry and Material Science at Heilongjiang University. Dr. Li’s research expertise lies in developing organic photo-functional materials, focusing on their innovative properties and applications.

🔬 Research and Innovations

Dr. Li’s work, supported by grants from the National Natural Science Foundation of China (Grant 52203213), has primarily advanced the field of organic photo-functional materials. His research encompasses the design and synthesis of smart organic materials with unique afterglow luminescence, facilitating new avenues in optical information storage and security applications.

🌈 Contributions to Science and Technology

Dr. Li’s contributions are significant in synthesizing organic smart materials with afterglow luminescence for optical data storage and security. His pioneering work enhances the development of organic materials that can store information securely, providing crucial advancements for applications that require high data security and retention.

Publications Top Noted📄

Highly stable ultralong organic phosphorescence from a 3D organic supramolecule constructed by halogen bonding and π–π interactions

Authors: Yao, A., Gao, J., Mu, Y., Su, Z., Wang, X.
Journal: Chemical Engineering Journal
Year: 2024

Regio-, Site-, and Stereoselective Three-Component Aminofluorination of 1,3-Dienes via Cooperative Silver Salt and Copper Catalysis

Authors: Li, Y., Dong, Y., Wang, X., Guan, W., Fu, J.
Journal: ACS Catalysis
Year: 2023

AIE-active Ir(III) complexes as type-I dominant photosensitizers for efficient photodynamic therapy

Authors: Tong, J., Yang, X., Song, X., Shan, G.-G., Li, G.
Journal: Dalton Transactions
Year: 2022

Construction of multi-hydroxyl/ketone lanthanide metal-organic frameworks for understanding mechanochromic luminescence and high proton conductivity

Authors: Hou, B., Yang, S., Li, B., Su, Z., Wang, X.
Journal: Inorganic Chemistry Frontiers
Year: 2022

Organic Supramolecular Zippers with Ultralong Organic Phosphorescence by a Dexter Energy Transfer Mechanism

Authors: Li, G., Jiang, D., Shan, G., Wang, X., Su, Z.
Journal: Angewandte Chemie International Edition
Year: 2022

Dr. Isaac N. Beas, Catalysis, Best Researcher Award

Dr. Isaac N. Beas, Catalysis, Best Researcher Award

Doctorate at Botswana Institute for Technology Research and Innovation, Botswana

Profiles

Scopus

Orcid

Google Scholar

🌟Summary

Dr. Isaac N. Beas is a seasoned Research Scientist with over a decade of expertise in heterogeneous catalysis, materials science, and advanced fuel technologies. Known for integrating AI/ML with material design and developing innovative catalysts, Isaac is a leader in his field with a strong track record in research, supervision, and academic contributions.

🎓Education

Ph.D. in Materials Science & Heterogeneous Catalysis
University of Johannesburg, SA (2011–2013)

M.Sc. in Physical Chemistry & Computational Chemistry
University of Yaounde I, Cameroon (2008–2010)

M.Sc. (Honors) Applied Chemistry
University of Yaounde I, Cameroon (2004–2008)

B.Sc. in Physical Science
University of Yaounde I, Cameroon (1994–2004)

🏫Professional Experience

Research Scientist
Botswana Institute for Technology Research and Innovation (BITRI), Botswana (July 2017–ongoing)

Research Fellow
University of South Africa (Sep 2017–ongoing)

Post-Doc Fellow
University of South Africa (May 2013–Jun 2017)

Visiting Researcher
Wits University, Johannesburg, SA (Jan 2010–Feb 2012)

🔬Research Interests

Catalysis: Heterogeneous, Gasification, Pyrolysis ⚙️

Material Science: AI/ML in Material Design, Nanomaterials 🌐

Energy: Coal-to-liquid, Biomass-to-fuel 🌱

🛠️Skills

Communication: Excellent

Leadership: Strong

Scientific Writing: Proficient

Project Management: Experienced

Teaching: Effective

Publications 📚

TiO2@hollow carbon spheres: A photocatalyst for hydrogen generation under visible irradiation

Authors: Boudjemaa, A., Nongwe, I., Mutuma, B.K., Bachari, K., Coville, N.J.

Journal: Journal of Photochemistry and Photobiology A: Chemistry

Year: 2021

Unravelling the interfacial interaction in mesoporous SiO2@nickel phyllosilicate/TiO2 core-shell nanostructures for photocatalytic activity

Authors: Mutuma, B.K., Mathebula, X., Nongwe, I., Tetana, Z., Coville, N.J.

Journal: Beilstein Journal of Nanotechnology

Year: 2020

Study of photoelectrochemical water splitting using composite films based on TiO2 nanoparticles and nitrogen or boron doped hollow carbon spheres as photoanodes

Authors: Ranganathan, K., Morais, A., Nongwe, I., Nogueira, A.F., Coville, N.J.

Journal: Journal of Molecular Catalysis A: Chemical

Year: 2016

Pt supported nitrogen doped hollow carbon spheres for the catalysed reduction of cinnamaldehyde

Authors: Nongwe, I., Ravat, V., Meijboom, R., Coville, N.J.

Journal: Applied Catalysis A: General

Year: 2016

N-doped ordered mesoporous carbon supported PdCo nanoparticles for the catalytic oxidation of benzyl alcohol

Authors: Ravat, V., Nongwe, I., Coville, N.J.

Journal: Microporous and Mesoporous Materials

Year: 2016

Synthesis of gold encapsulated in spherical carbon capsules with a mesoporous shell structure. A robust catalyst in a nanoreactor

Authors: Nongwe, I., Bepete, G., Shaikjee, A., Meijboom, R., Coville, N.J.

Journal: Catalysis Communications

Year: 2014