Shaozhong Wang | Organic Synthesis | Best Researcher Award

Best Researcher Award

Shaozhong Wang
Nanjing University, China

Shaozhong Wang
Affiliation Nanjing University
Country China
Scopus ID 7410336759
Documents 85
Citations 3,046
h-index 28
Subject Area Organic Synthesis
Event International Chemistry Scientist Awards

Shaozhong Wang is a researcher affiliated with Nanjing University whose stated subject area is organic synthesis. The profile information supplied for this article reports 85 documents, 3,046 citations, and an h-index of 28 in Scopus; bibliometric indicators may change as databases are updated and should be interpreted in relation to field, career stage, and publication practices .[1]

Abstract

This article presents a structured recognition profile for Shaozhong Wang of Nanjing University in connection with the International Chemistry Scientist Awards. The profile identifies organic synthesis as the stated subject area and records bibliometric information supplied for the researcher. The information is descriptive rather than evaluative, and formal award decisions remain the responsibility of the awarding organization .[1]

Keywords

Organic synthesis; synthetic methodology; catalytic reactions; heterocyclic chemistry; total synthesis; gold catalysis; copper catalysis; asymmetric synthesis; alkyne-carbonyl metathesis; reaction mechanism; medicinally relevant scaffolds; Nanjing University.[1]

Introduction

Organic synthesis concerns the design and preparation of organic molecules through controlled chemical transformations. It supports research across medicinal chemistry, materials science, catalysis, and related areas, while modern evaluation increasingly combines publication records with evidence concerning reproducibility, originality, collaboration, and broader scientific contribution .[3]

Research Profile

The supplied profile places Shaozhong Wang at Nanjing University in China and identifies organic synthesis as the principal subject area. The associated Scopus identifier is 7410336759, allowing readers to consult the indexed author record and assess the current scope of the bibliometric information Scopus author profile .[1]

Research Contributions

On the basis of the supplied information, Wang’s research profile is associated with organic synthesis. A complete assessment of contributions would require examination of individual publications, experimental findings, co-authorship patterns, datasets, patents, and independent citations; those details are not included in the present record.[3]

Publications

The supplied data reports 85 documents indexed under the stated Scopus author identifier. Because individual titles, journals, publication dates, and DOI records were not supplied, no specific publication is attributed to Wang in this article. Readers should use the author profile and publisher records to verify publication-level information.[2]

Research Impact

The reported citation count and h-index provide quantitative indicators of visibility within the indexed literature, but they do not by themselves establish the quality, significance, or societal value of a research program. Interpretation should account for database coverage, disciplinary citation behavior, self-citation, field norms, and the date on which the metrics were collected .[2]

Award Suitability

The supplied indicators establish a reasonable basis for considering Shaozhong Wang within a research-recognition context focused on chemistry, particularly organic synthesis. They should be treated as supporting information rather than as a definitive ranking, since award suitability also depends on the criteria, nomination materials, peer review, and verification procedures applied by the International Chemistry Scientist Awards .[1]

Conclusion

Shaozhong Wang is presented as a Nanjing University researcher working in organic synthesis, with the supplied profile reporting 85 documents, 3,046 citations, and an h-index of 28. These data support consideration in an academic recognition context, while a complete scholarly evaluation requires current database verification and detailed review of the underlying research record.[3]

References

  1. Elsevier. Scopus Author Profile: Shaozhong Wang, author identifier 7410336759.
    https://www.scopus.com/pages/authors/7410336759.
  2. Xu, Z., & Wang, S. (n.d.). Palladium-catalyzed enantioselective hydroamination of alkoxyallenes with 2-pyridones.
    https://www.researchgate.net/publication/398414988
  3. Xue, Y., & Wang, S. (n.d.). C–H arylation of aminoquinones through electrochemical denitrogenative coupling.
    https://www.researchgate.net/publication/388733959

Dr. Sae Hume Park | Chemical Synthesis | Green Chemistry Award

Dr. Sae Hume Park | Chemical Synthesis | Green Chemistry Award

Senior Research Scientist | Korea Research Institute of Chemical Technology | South Korea

Dr. Sae Hume Park, a Senior Research Scientist at the Korea Research Institute of Chemical Technology (KRICT), is an accomplished organometallic and organic chemist with expertise spanning organometallic synthesis, catalysis, polymer chemistry, and sustainable material design. His research primarily focuses on developing environmentally sustainable chemical processes utilizing renewable resources such as CO₂ and bio-based feedstocks, integrating both homogeneous and heterogeneous catalytic systems for scalable industrial applications. Dr. Park has made significant contributions to hydrocarbon functionalization, polymer precursor synthesis, and hybrid materials for catalysis, achieving impactful advancements in sustainable and green chemistry. His earlier work includes the development of innovative C–H activation methodologies and catalytic transformations employing transition metals and main-group elements. With an extensive publication record in high-impact journals, his studies have influenced areas including green polymer synthesis, methane activation, and electrochemical catalysis. According to Google Scholar, Dr. Park has over 2,560 citations, an h-index of 16, and an i10-index of 17; while Scopus records 78 citations from 76 documents with an h-index of 4. His interdisciplinary research bridges fundamental chemistry and industrial sustainability, emphasizing catalytic efficiency, renewable carbon utilization, and polymer upcycling.

Profiles : Google Scholar | Scopus | Orcid

Featured Publications : 

  • Kim, K., Kim, W., Yuk, J. S., Jeong, H., Jeon, H., Yoo, Y., Shin, J., & Park, S. H. (2024). Soybean oil derived-process oil prepared via recyclable organocatalysis for eco-friendly styrene-butadiene rubber composites. Green Chem., 26, 3732.

  • Jeong, H., Hong, S. J., Yuk, J. S., Lee, H., Koo, H., Park, S. H., & Shin, J. (2023). Renewable and degradable triblock copolymers produced via metal-free polymerizations. ACS Sustainable Chem. Eng., 11, 4871.

  • Gunsalus, N. J., Koppaka, A., Park, S. H., Bischof, S. M., Hashiguchi, B. G., & Periana, R. A. (2017). Homogeneous functionalization of methane. Chem. Rev., 117, 8521.

  • Koppaka, A., Park, S. H., Hashiguchi, B. G., Ess, D. H., & Periana, R. A. (2019). Selective C−H functionalization of methane and ethane by a molecular Sb(V) complex. Angew. Chem. Int. Ed., 58, 2241.

  • Ryu, J., Jung, N., Lim, D. H., Shin, D. Y., Park, S. H., Ham, H. C., Kim, H. J., Jang, J. H., & Yoo, S. J. (2014). P-modified and carbon-shell coated Co nanoparticles for efficient alkaline oxygen reduction catalysis. Chem. Commun., 50, 15940.