Selective difluoromethylation and monofluoromethylation reactions J Hu, W Zhang, F Wang Chemical Communications, 7465-7478, 2009 | 417 | 2009 |
Synthesis of gem‐Difluorinated Cyclopropanes and Cyclopropenes: Trifluoromethyltrimethylsilane as a Difluorocarbene Source F Wang, T Luo, J Hu, Y Wang, HS Krishnan, PV Jog, SK Ganesh, ... Angewandte Chemie 123 (31), 7291-7295, 2011 | 335 | 2011 |
Synthesis of gem‐Difluorocyclopropa (e) nes and O‐, S‐, N‐, and P‐Difluoromethylated Compounds with TMSCF2Br L Li, F Wang, C Ni, J Hu Angewandte Chemie 125 (47), 12616-12620, 2013 | 327 | 2013 |
N-Tosyl-S-difluoromethyl-S-phenylsulfoximine: A new difluoromethylation reagent for S-, N-, and C-nucleophiles W Zhang, F Wang, J Hu Organic letters 11 (10), 2109-2112, 2009 | 224 | 2009 |
Chloride ion-catalyzed generation of difluorocarbene for efficient preparation of gem-difluorinated cyclopropenes and cyclopropanes F Wang, W Zhang, J Zhu, H Li, KW Huang, J Hu Chemical Communications 47 (8), 2411-2413, 2011 | 152 | 2011 |
Biomimetic Fenton‐Catalyzed Lignin Depolymerization to High‐Value Aromatics and Dicarboxylic Acids J Zeng, CG Yoo, F Wang, X Pan, W Vermerris, Z Tong ChemSusChem 8 (5), 861-871, 2015 | 128 | 2015 |
TMSCF3 as a Convenient Source of CF2=CF2 for Pentafluoroethylation, (Aryloxy)tetrafluoroethylation, and Tetrafluoroethylation L Li, C Ni, Q Xie, M Hu, F Wang, J Hu Angewandte Chemie International Edition 56 (33), 9971-9975, 2017 | 103 | 2017 |
Difluoromethylation of O‐, S‐, N‐, C‐Nucleophiles Using Difluoromethyltri (n‐butyl) ammonium Chloride as a New Difluorocarbene Source F Wang, W Huang, J Hu Chinese Journal of Chemistry 29 (12), 2717-2721, 2011 | 87 | 2011 |
Deoxyfluorination of alcohols with 3, 3-difluoro-1, 2-diarylcyclopropenes L Li, C Ni, F Wang, J Hu Nature communications 7, 13320, 2016 | 73 | 2016 |
Deoxygenative gem-difluoroolefination of carbonyl compounds with (chlorodifluoromethyl) trimethylsilane and triphenylphosphine F Wang, L Li, C Ni, J Hu Beilstein journal of organic chemistry 10 (1), 344-351, 2014 | 68 | 2014 |
Chlorodifluoromethyl aryl ketones and sulfones as difluorocarbene reagents: The substituent effect F Wang, L Zhang, J Zheng, J Hu Journal of Fluorine Chemistry 132 (8), 521-528, 2011 | 47 | 2011 |
Deoxyfluorination of Carboxylic Acids with CpFluor: Access to Acyl Fluorides and Amides X Wang, F Wang, F Huang, C Ni, J Hu Organic Letters 23 (5), 1764-1768, 2021 | 38 | 2021 |
Brønsted Acid Mediated (sp3) Carbon‐Fluorine Bond Activation: Inter‐and Intramolecular Arylation of Trifluoromethylated Arenes F Wang, J Hu Chinese Journal of Chemistry 27 (1), 93-98, 2009 | 38 | 2009 |
Three step procedure for the preparation of aromatic and aliphatic difluoromethyl ethers from phenols and alcohols using a chlorine/fluorine exchange methodology WR Dolbier Jr, F Wang, X Tang, CS Thomoson, L Wang Journal of Fluorine Chemistry 160, 72-76, 2014 | 34 | 2014 |
Difluoro (phenylchalcogen) methylation of aldehydes, ketones, and imines with S-, Se-, and Te-containing reagents PhXCF2H (X= S, Se, Te) M Hu, F Wang, Y Zhao, Z He, W Zhang, J Hu Journal of Fluorine Chemistry 135, 45-58, 2012 | 30 | 2012 |
Copper-mediated fluoroalkylation reactions with [(phenylsulfonyl)-difluoromethyl] trimethylsilane: synthesis of PhSO2CF2-containing allenes and alkynes J Zhu, F Wang, W Huang, Y Zhao, W Ye, J Hu Synlett 2011 (07), 899-902, 2011 | 30 | 2011 |
Controllable depolymerization of lignin using carbocatalyst graphene oxide under mild conditions J Zeng, Z Tong, H Bao, N Chen, F Wang, Y Wang, D Xiao Fuel 267, 117100, 2020 | 28 | 2020 |
Dehydro-aromatization of cyclohexene-carboxylic acids by sulfuric acid: critical route for bio-based terephthalic acid synthesis F Wang, Z Tong RSC Advances 4 (12), 6314-6317, 2014 | 21 | 2014 |
Solely Biomass‐Derived Polyethylene Terephthalate (PET): Conversion of Bio‐based Isoprene and Acrolein to p‐Xylene and Terephthalic Acid F Wang, Z Tong ChemistrySelect 1 (17), 5538-5541, 2016 | 19 | 2016 |
Free radical fluoroalkylation of terminal alkenes and alkynes with iododifluoromethanesulfonamides JM Zhu, F Wang, JB Hu Science China Chemistry 54 (1), 95-102, 2011 | 2 | 2011 |