Saegun Kim | Chemistry | Best Academic Researcher Award

Best Academic Researcher Award

Saegun Kim
Sookmyung Women’s University

Saegun Kim
Affiliation Sookmyung Women’s University
Country South Korea
Scopus ID 57190068872
Documents 30
Citations 1,127
h-index 19
Subject Area Chemistry
Event International Research Hypothesis Excellence Award

Saegun Kim is a chemistry researcher whose published work includes studies in transition-metal-catalyzed C–H functionalization, annulation, alkylation, amination, and heterocycle synthesis. The publication record supplied for this profile includes articles appearing in journals such as The Journal of Organic Chemistry, Organic Letters, and Angewandte Chemie International Edition. Selected publications demonstrate research activity in synthetic organic chemistry and catalytic reaction development.[1][2][3]

Abstract

This academic recognition profile presents Saegun Kim in the context of the Best Academic Researcher Award and the International Research Hypothesis Excellence Award. The supplied researcher metrics identify 30 documents, 1,127 citations, and an h-index of 19, with Chemistry listed as the principal subject area. Kim’s documented publication record includes research on Rh(III)-catalyzed C–H functionalization, C–H alkylation, annulation reactions, anthranil-mediated amination, and related approaches to the synthesis and functionalization of heterocyclic compounds.[1][2][3][4]

Keywords

Saegun Kim; Best Academic Researcher Award; Chemistry; Sookmyung Women’s University; organic chemistry; C–H functionalization; Rhodium catalysis; heterocycle synthesis; annulation reactions; alkylation; amination; synthetic methodology; International Research Hypothesis Excellence Award.

Introduction

Academic research in synthetic chemistry frequently focuses on the development of selective and efficient methods for constructing molecular frameworks with potential value in pharmaceutical, materials, and chemical research. Transition-metal-catalyzed C–H functionalization is an important area within modern synthetic chemistry because it can enable direct transformation of carbon–hydrogen bonds into more highly functionalized structures. The supplied publication record associated with Saegun Kim includes several studies applying rhodium catalysis and related strategies to the synthesis and modification of nitrogen-containing organic compounds.[1][2]

Research Profile

Saegun Kim is identified in the supplied information as being affiliated with Sookmyung Women’s University in South Korea and working in the subject area of Chemistry. The supplied Scopus identifier is 57190068872, accompanied by 30 documents, 1,127 citations, and an h-index of 19. These figures are presented as the supplied profile metrics and may change as bibliographic databases are updated.[4]

Research Contributions

The supplied publications indicate several interconnected areas of synthetic organic chemistry:

  • Development of Rh(III)-catalyzed C–H functionalization strategies for the preparation of structurally diverse organic molecules.
  • Investigation of C(sp3)–H alkylation of 8-methylquinolines with maleimides, providing a direct route toward functionalized succinimide-containing structures.[2]
  • Contribution to Rh(III)-catalyzed annulation chemistry involving azobenzenes and sulfoxonium ylides for the synthesis of 3-acyl (2H)-indazoles.[1]
  • Research involving anthranils as both amination and transient directing-group sources in the synthesis of 2-acyl acridines.[4]

Publications

The researcher has made significant contributions to modern organic chemistry, particularly in transition-metal-catalyzed C–H functionalization and heterocyclic synthesis. Their publications include Rh(III)-catalyzed annulation for the synthesis of 2H-indazoles, C(sp³)–H alkylation of 8-methylquinolines, and reductive C2-alkylation of pyridine and quinoline N-oxides using Wittig reagents. These studies demonstrate advances in efficient synthetic methodologies and provide valuable strategies for constructing structurally important nitrogen-containing compounds.

Research Impact

The supplied bibliometric profile reports 1,127 citations and an h-index of 19 across 30 documents. Such indicators provide quantitative information about the visibility and citation history of a researcher’s indexed publication record, although bibliometric measures should be interpreted alongside publication quality, authorship contributions, disciplinary norms, and the nature of individual research outputs.

The selected publications also demonstrate engagement with established areas of contemporary synthetic chemistry. For example, the reported Rh(III)-catalyzed indazole synthesis describes C–H functionalization followed by annulation of azobenzenes with sulfoxonium ylides, while the anthranil study describes the use of anthranils as transient directing-group and amination sources.[1][4]

Award Suitability

Based on the information supplied for this profile, Saegun Kim’s record presents several characteristics relevant to consideration for an academic research recognition program. These include a substantial indexed publication record, reported citation activity, an h-index of 19, and peer-reviewed research addressing catalytic and synthetic chemistry problems.

  • Research productivity: The supplied profile records 30 indexed documents.
  • Research visibility: The supplied profile reports 1,127 citations and an h-index of 19.
  • Subject relevance: The publication record is closely aligned with Chemistry, particularly synthetic and organic chemistry.
  • Methodological contribution: Selected studies address C–H activation, annulation, alkylation, amination, and heterocycle synthesis.[1][2][4]

Conclusion

Saegun Kim’s supplied research profile reflects scholarly activity in Chemistry with a particular emphasis on synthetic organic chemistry and catalytic reaction development. The documented publications cover several approaches to C–H functionalization and the synthesis or modification of nitrogen-containing compounds, while the supplied bibliometric indicators report 30 documents, 1,127 citations, and an h-index of 19. On the basis of these documented characteristics, the profile provides a substantive academic basis for consideration in connection with the Best Academic Researcher Award.

References

  1. Oh, H., Han, S., Pandey, A. K., Han, S. H., Mishra, N. K., Kim, S., Chun, R., Kim, H. S., Park, J., & Kim, I. S. (2018). Synthesis of (2H)-Indazoles through Rh(III)-Catalyzed Annulation Reaction of Azobenzenes with Sulfoxonium Ylides. The Journal of Organic Chemistry, 83(7), 4070–4077. DOI: 10.1021/acs.joc.8b00501.
    https://doi.org/10.1021/acs.joc.8b00501
  2. Han, S., Park, J., Kim, S., Lee, S. H., Sharma, S., Mishra, N. K., Jung, Y. H., & Kim, I. S. (2016). Rhodium(III)-Catalyzed C(sp3)–H Alkylation of 8-Methylquinolines with Maleimides. Organic Letters, 18(18), 4666–4669. DOI: 10.1021/acs.orglett.6b02295.
    https://doi.org/10.1021/acs.orglett.6b02295
  3. Han, S., Chakrasali, P., Park, J., Oh, H., Kim, S., Kim, K., Pandey, A. K., Han, S. H., et al. (2018). Reductive C2-Alkylation of Pyridine and Quinoline N-Oxides Using Wittig Reagents. Angewandte Chemie International Edition, 57(39), 12737–12740. DOI: 10.1002/anie.201807159.
    https://doi.org/10.1002/anie.201807159
  4. Kim, S., Han, S. H., Mishra, N. K., Chun, R., Jung, Y. H., Kim, H. S., Park, J. S., & Kim, I. S. (2018). Dual Role of Anthranils as Amination and Transient Directing Group Sources: Synthesis of 2-Acyl Acridines. Organic Letters, 20(13), 4010–4014. DOI: 10.1021/acs.orglett.8b01571.
    https://doi.org/10.1021/acs.orglett.8b01571
  5. Elsevier. (n.d.). Scopus author details: Saegun Kim, Author ID 57190068872. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57190068872
  6. Google Scholar. (n.d.). Saegun Kim — Google Scholar profile and publication record.
    https://scholar.google.com/citations?user=ElDjQXgAAAAJ&hl=en&oi=ao

Ravi Dalsania | Chemistry and Materials Science | Best Researcher Award

Best Researcher Award

Ravi Dalsania
Affiliation Reliance Industries Limited
Country India
Scopus ID 58925174800
Documents 3
Citations 3
h-index 1
Subject Area Chemistry and Materials Science
Event International Research Hypothesis Excellence Award
ORCID 0000-0002-9238-515X

Ravi Dalsania
Reliance Industries Limited, India

Ravi Dalsania  the Best Researcher Award recognizes sustained scholarly contributions supported by peer-reviewed publications, measurable research impact, and relevance to contemporary scientific challenges. Ravi Dalsania has contributed to research in chemistry and materials science through studies involving crude oil characterization, graphitic carbon development, graphene-based materials, and stability assessment methodologies. The published work demonstrates an emphasis on industrial applications while integrating analytical techniques with material innovation.[1]

Abstract

Ravi Dalsania’s published research addresses industrial chemistry with particular attention to petroleum-derived carbon materials, crude oil stability, and environmentally relevant material applications. The research combines laboratory characterization methods with practical engineering perspectives, contributing to understanding hydrocarbon systems and advanced carbon-based materials. These publications collectively demonstrate interdisciplinary engagement across chemistry, materials science, and industrial process optimization.[2]

Keywords

Crude Oil Stability, Graphitic Carbon, Reduced Graphene Oxide, TLC-FID, Materials Science, Wastewater Treatment, Petroleum Chemistry, Colloidal Instability Index.

Introduction

Research in petroleum chemistry increasingly integrates advanced analytical methods with sustainable material development. The investigations undertaken by Ravi Dalsania reflect this direction by exploring crude oil compatibility, carbon material synthesis, and environmental remediation applications. These studies contribute to understanding industrial feedstocks while encouraging efficient resource utilization and innovative material design.[3]

Research Profile

Affiliated with Reliance Industries Limited, Ravi Dalsania has an indexed Scopus profile (Author ID: 58925174800) comprising three peer-reviewed publications, three citations, and an h-index of one. The research portfolio primarily falls within Chemistry and Materials Science and demonstrates consistent engagement with applied industrial research and analytical characterization techniques.[1]

Research Contributions

  • Investigated advanced crude oil stability and compatibility using TLC-FID SARA analysis and colloidal instability indices.
  • Developed microwave-assisted reduced graphene oxide derived from petroleum feedstocks for wastewater treatment and oil spill remediation.
  • Explored graphitic carbon production from crude oil vacuum residue for advanced material applications.

Publications

  1. Advanced crude oil stability and compatibility assessment: A TLC-FID SARA approach correlating P-value and the colloidal instability index. Results in Chemistry (2026).
  2. Microwave-assisted reduced graphene oxide from vacuum gas oil derived graphitic carbon. Desalination and Water Treatment (2025).
  3. Exploration of graphitic carbon from crude oil vacuum residue. Carbon Trends (2024).

Research Impact

The available publication record indicates contributions to industrially significant topics including petroleum processing, carbon material engineering, and environmental technologies. Although the citation profile is currently modest, the research demonstrates scientific relevance through publication in peer-reviewed journals and addresses practical challenges encountered in energy and materials industries.[4]

Award Suitability

Based on the documented publication portfolio, indexed scholarly profile, and research focus, Ravi Dalsania demonstrates characteristics appropriate for consideration under the International Research Hypothesis Excellence Award. The work reflects originality in petroleum-derived material research, application-oriented investigation, and dissemination through recognized scientific journals. Award decisions should ultimately follow the established evaluation criteria of the organizing body.[5]

Conclusion

Ravi Dalsania’s scholarly record presents a focused contribution to chemistry and materials science through investigations involving petroleum-derived carbon materials, crude oil stability, and environmental applications. The combination of peer-reviewed publications, indexed academic visibility, and practical industrial relevance supports recognition within academic and professional research communities while encouraging continued scientific advancement.

References

  1. Elsevier. (n.d.). Scopus author details: Ravi Dalsania, Author ID 58925174800.
    https://www.scopus.com/authid/detail.uri?authorId=58925174800
  2. Results in Chemistry. (2026). Advanced crude oil stability and compatibility assessment.
    https://doi.org/10.1016/j.rechem.2026.103096
  3. Desalination and Water Treatment. (2025). Microwave-assisted reduced graphene oxide.
    https://doi.org/10.1016/j.dwt.2025.101307
  4. Carbon Trends. (2024). Exploration of graphitic carbon from crude oil vacuum residue.
    https://doi.org/10.1016/j.cartre.2024.100424
  5. International Research Hypothesis Excellence Award. Official website.
    researchhypothesis.com

Ying Liu | Chemistry | Research Excellence Award

Assoc. Prof. Dr. Ying Liu | Chemistry | Research Excellence Award

Nanjing Normal University | China

Ying Liu is an associate professor specializing in multifunctional hybrid nanomaterials for advanced electrocatalytic energy conversion and resource-oriented transformation. Her research emphasizes hydrogen-mediated systems, integrating photothermal and photoelectronic effects to enhance catalytic performance and sustainability. She has made notable contributions through high-impact publications in leading journals and holds several national invention patents, demonstrating innovation in nanostructure design and catalytic mechanisms. Her work focuses on interface engineering, phase modulation, and synergistic effects in nanohybrids to improve reaction kinetics and efficiency. With 2,387 citations, 47 documents, and an h-index of 27, her research shows strong academic impact and relevance in energy and environmental applications.

Citation Metrics (Scopus)

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Citations
2387

Documents
47

h-index
27

🟦 Citations 🟥 Documents 🟩 h-index


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