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黄汉民
单位:化学与材料科学学院
地址:中国科学技术大学东校区环境资源楼534室
邮编:230026
电话:18019907506
个人主页: http://dslx.ustc.edu.cn/?menu=expert_paper&expertid=4762
 
个人简历 Personal resume
黄汉民,中国科学技术大学讲席教授,博士生导师,科技部重点研发计划首席科学家,英国皇家化学会会士。1974年6月生于湖北浠水。2003年于中国科学院大连化学物理研究所获得有机化学博士学位,2004年至2008年在日本名古屋大学做JSPS博士后研究。2008年4月至2016年3月在中国科学院兰州化学物理研究所工作;后调入中国科学技术大学化学系。目前主要研究领域为过渡金属催化的合成方法及应用研究,着重发展惰性C-H和C-N键活化新策略,并在此基础上建立烃类物质和资源小分子的高效转化新反应。发明了金属有机活性中间体“Huang-Complex”,在此基础上发展了C-N复分解基元新反应和烷基胺活性动态排序新模式,并建立了金属电子梭催化新范式,为C-C键构建提供了新的催化机制。已作为第一作者或通讯作者发表研究论文180余篇,包括Nature Chemistry、 Nature Catalysis、JACS、ACIE、Nature Communications、Acc.Chem.Res.、Chem.Rev.和Chem.Soc.Rev.等,被引用超8000次。获国家自然科学基金优秀青年基金(2012)和国家杰出青年基金(2019)项目资助,入选科技部中青年科技创新领军人才(2015),国家万人计划领军人才(2017),中国均相催化委员会均相催化青年奖(2013)和中科院优秀研究生指导教师奖(2015)。所指导的博士研究生多人次获得研究生国家奖和中科院院长奖,一人获得中科院优秀博士论文奖。
 
研究方向 Research direction
金属有机化学
不对称催化
 
招生信息 Enrollment information
对有机化学有强烈的兴趣,具备良好的金属有机化学基础知识背景。
 
论文专著 The monograph
1) Carbonylative Formal Cycloaddition between Alkylarenes and Aldimines Enabled by Palladium-Catalyzed Double C-H Bond Activation - JOURNAL OF THE AMERICAN CHEMICAL SOCIETY - 2023
2) Asymmetric Aminomethylative Etherification of Conjugated Dienes with Aliphatic Alcohols Facilitated by Hydrogen Bonding - JOURNAL OF THE AMERICAN CHEMICAL SOCIETY - 2021
3) Palladium-Catalyzed Ring-Closing Aminoalkylative Amination of Unactivated Aminoenynes - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2023
4) Palladium-Catalyzed Aminoalkylative Cyclization Enables Modular Synthesis of Exocyclic 1,3-Dienes - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2023
5) Double alkyl-alkyl bond construction across alkenes enabled by nickel electron-shuttle catalysis - NATURE CATALYSIS - 2023
6) Carbonylative Formal Cycloaddition between Alkylarenes and Aldimines Enabled by Palladium-Catalyzed Double C-H Bond Activation - JOURNAL OF THE AMERICAN CHEMICAL SOCIETY - 2023
7) Photocatalyzed Aminomethylation of Alkyl Halides Enabled by Sterically Hindered N-Substituents - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2023
8) Iron-catalyzed Fluoroalkylative Alkylsulfonylation of Alkenes via Radical-anion Relay - NATURE COMMUNICATIONS - 2024
9) Intramolecular Carboamination of Aminodienes to N-Heterocycles via C-N Bond Activation - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2024
10) Site-Selective Carbonylative Cyclization with Two Allylic C-H Bonds Enabled by Radical Differentiation - JOURNAL OF THE AMERICAN CHEMICAL SOCIETY - 2024
11) Dynamic amine sorting enables multiselective construction of unsymmetrical chiral diamines - NATURE CHEMISTRY - 2024
12) Tailored chiral phosphoramidites support highly enantioselective Pd catalysts for asymmetric aminoalkylative amination - NATURE COMMUNICATIONS - 2024
13) Intramolecular Carboamination of Aminodienes to N-Heterocycles via C-N Bond Activation - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2024
14) Site-Selective Carbonylative Cyclization with Two Allylic C-H Bonds Enabled by Radical Differentiation - JOURNAL OF THE AMERICAN CHEMICAL SOCIETY - 2024
15) Dynamic amine sorting enables multiselective construction of unsymmetrical chiral diamines - NATURE CHEMISTRY - 2024
16) Tailored chiral phosphoramidites support highly enantioselective Pd catalysts for asymmetric aminoalkylative amination - NATURE COMMUNICATIONS - 2024
17) Palladium-Catalyzed Ring-Closing Aminoalkylative Amination of Unactivated Aminoenynes - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2023
18) Palladium-Catalyzed Aminoalkylative Cyclization Enables Modular Synthesis of Exocyclic 1,3-Dienes - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2023
19) Double alkyl-alkyl bond construction across alkenes enabled by nickel electron-shuttle catalysis - NATURE CATALYSIS - 2023
20) Carbonylative Formal Cycloaddition between Alkylarenes and Aldimines Enabled by Palladium-Catalyzed Double C-H Bond Activation - JOURNAL OF THE AMERICAN CHEMICAL SOCIETY - 2023
21) Photocatalyzed Aminomethylation of Alkyl Halides Enabled by Sterically Hindered N-Substituents - ANGEWANDTE CHEMIE-INTERNATIONAL EDITION - 2023
22) Iron-catalyzed Fluoroalkylative Alkylsulfonylation of Alkenes via Radical-anion Relay - NATURE COMMUNICATIONS - 2024
 
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