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Chemistry

D-Index
58
Citations
9973
World Ranking
10813
National Ranking
1758

Overview

Jie-Ping Wan is a researcher affiliated with Jiangxi Normal University in China. Their primary field of study is chemistry, with a significant focus on organic chemistry, as well as contributions to materials chemistry, pharmaceutical science, inorganic chemistry, and pharmacology.

The range of topics covered in their work includes catalytic C-H functionalization methods, synthesis and catalytic reactions, sulfur-based synthesis techniques, synthesis and characterization of pyrroles, cyclopropane reaction mechanisms, fluorine in organic chemistry, and oxidative organic chemistry reactions.

Their publication record includes numerous research papers, with notable recent works such as:

  • Recent Advances in Reactions Using Enaminone in Water or Aqueous Medium (2022, Advanced Synthesis & Catalysis)
  • The Domino Chromone Annulation and a Transient Halogenation-Mediated C-H Alkenylation toward 3-Vinyl Chromones (2020, Organic Letters)
  • Recent advances in visible light-mediated chemical transformations of enaminones (2023, Chinese Chemical Letters)
  • Recent advances in transition metal-free annulation toward heterocycle diversity based on the C-N bond cleavage of enaminone platform (2022, Organic & Biomolecular Chemistry)
  • Transition metal-free synthesis of 3-trifluoromethyl chromones via tandem C-H trifluoromethylation and chromone annulation of enaminones (2020, Organic Chemistry Frontiers)

Frequently published in several established journals, Jie-Ping Wan's work appears predominantly in:

  • The Journal of Organic Chemistry
  • Organic Letters
  • The Cambridge Structural Database
  • Chinese Journal of Organic Chemistry
  • Organic Chemistry Frontiers

Jie-Ping Wan collaborates often with a range of coauthors, including Yunyun Liu, Leiqing Fu, Liyun Zhou, and Baoli Zhao, reflecting a collaborative research environment.

Best Publications

  • Recent advances in new multicomponent synthesis of structurally diversified 1,4-dihydropyridines

    Jie-Ping Wan;Yunyun Liu

  • Recent Advances in Diversity Oriented Synthesis through Isatin-based Multicomponent Reactions

    Yunyun Liu;Hang Wang;Jieping Wan

  • Tandem reactions initiated by copper-catalyzed cross-coupling: a new strategy towards heterocycle synthesis

    Yunyun Liu;Jie-Ping Wan

  • Facile synthesis of 2-(phenylthio)phenols by copper(I)-catalyzed tandem transformation of C-S coupling/C-H functionalization.

    Runsheng Xu;Jie-Ping Wan;Hui Mao;Yuanjiang Pan

  • KIO3-Catalyzed Aerobic Cross-Coupling Reactions of Enaminones and Thiophenols: Synthesis of Polyfunctionalized Alkenes by Metal-Free C–H Sulfenylation

    Jie-Ping Wan;Shanshan Zhong;Lili Xie;Xiaoji Cao

  • Water mediated chemoselective synthesis of 1,2-disubstituted benzimidazoles using o-phenylenediamine and the extended synthesis of quinoxalines

    Jie-Ping Wan;Shi-Feng Gan;Jian-Mei Wu;Yuanjiang Pan

  • Visible Light-Induced Thiocyanation of Enaminone C-H Bond to Access Polyfunctionalized Alkenes and Thiocyano Chromones.

    Yong Gao;Yunyun Liu;Jie-Ping Wan

  • Transition metal-catalyzed C–H bond functionalization in multicomponent reactions: a tool toward molecular diversity

    Jie-Ping Wan;Lu Gan;Yunyun Liu

  • Base-Promoted Synthesis of N-Substituted 1,2,3-Triazoles via Enaminone–Azide Cycloaddition Involving Regitz Diazo Transfer

    Jie-Ping Wan;Shuo Cao;Yunyun Liu

  • Ambient and aerobic carbon–carbon bond cleavage toward α-ketoester synthesis by transition-metal-free photocatalysis

    Qing Yu;Yating Zhang;Jie-Ping Wan

  • Advances in Copper-Catalyzed C ? C Coupling Reactions and Related Domino Reactions Based on Active Methylene Compounds

    Yunyun Liu;Jie-Ping Wan

  • A Metal- and Azide-Free Multicomponent Assembly toward Regioselective Construction of 1,5-Disubstituted 1,2,3-Triazoles

    Jie-Ping Wan;Shuo Cao;Yunyun Liu

  • Thermoinduced Free-Radical C-H Acyloxylation of Tertiary Enaminones: Catalyst-Free Synthesis of Acyloxyl Chromones and Enaminones.

    Yanhui Guo;Yunfeng Xiang;Li Wei;Jie-Ping Wan

  • Domino Reactions Based on Combinatorial Bond Transformations in Electron-Deficient Tertiary Enamines.

    Jie-Ping Wan;Yong Gao

  • Novel regioselectivity: three-component cascade synthesis of unsymmetrical 1,4- and 1,2-dihydropyridines.

    Jie-Ping Wan;Shi-Feng Gan;Gong-Lei Sun;Yuan-Jiang Pan

  • Chemo-/regioselective synthesis of 6-unsubstituted dihydropyrimidinones, 1,3-thiazines and chromones via novel variants of Biginelli reaction.

    Jie-Ping Wan;Yuan-Jiang Pan

  • Domino C-H Sulfonylation and Pyrazole Annulation for Fully Substituted Pyrazole Synthesis in Water Using Hydrophilic Enaminones

    Yanhui Guo;Guodong Wang;Li Wei;Jie-Ping Wan

  • Synthesis of 3-sulfenylated indoles by a simple NaOH promoted sulfenylation reaction

    Yunyun Liu;Yi Zhang;Changfeng Hu;Jie-Ping Wan

  • Recent advances in visible light-mediated chemical transformations of enaminones

    Unknown

  • KIO3‐Catalyzed Domino C(sp2)−H Bond Sulfenylation and C−N Bond Oxygenation of Enaminones toward the Synthesis of 3‐Sulfenylated Chromones

    Shanshan Zhong;Yunyun Liu;Xiaoji Cao;Jie-Ping Wan

  • Bio-based green solvent mediated disulfide synthesis via thiol couplings free of catalyst and additive

    Yunyun Liu;Hang Wang;Chunping Wang;Jie-Ping Wan

Frequent Co-Authors

Yuanjiang Pan
Yuanjiang Pan Zhejiang University

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