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Design and Development of New Chiral Diene Ligands with Bicyclo[ 3.3.0 ] Backbone for Asymmetric Cat
所属机构名称:中国科学院上海有机化学研究所
会议名称:International Symposium on Catalysis & Fine Chemicals (CFC 2009)
成果类型:会议
相关项目:手性催化剂负载中的若干新方法研究
作者:
徐明华|
同会议论文项目
手性催化剂负载中的若干新方法研究
期刊论文 50
会议论文 41
著作 3
同项目会议论文
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From nature’s Aldolases to Chiral Primary Amines Catalysts
Development of Novel Chiral Phosphorus Ligands for Homogeneous and Heterogeneous Enantioselective Ca
From nature’s Aldolases to Chiral Primary Amines Catalysts
New Developments in Asymmetric C-C Bond Formation using N-tert-Butanesulfinyl Imines and Bicyclo[ 3.
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Development of Novel Chiral Phosphorous Ligands for Enantioselective Homogeneous and Heterogeneous C
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Development of Highly Efficient Chiral Catalysts on the Basis of Mechanistic Understanding
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Development of New Synthetic Strategies: Towards the Asymmetric Synthesis of Some Structurally Impor
Development of Homogeneous and Heterogeneous Asymmetric Catalysts for Practical Enantioselective Rea
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Highly Efficient Chiral Organometallic Catalysts for Homo- and Heterogeneous Asymmetric Hydrogenatio
Development of Homogeneous and Heterogeneous Chiral Catalysts for Practical Enantioselective Reactio
基于分子组装的手性催化剂自负载策略研究
Self-Supported Chiral Catalysts for Heterogeneous Enantioselective Reactions
Functionalized Chiral Ionic Liquids as Asymmetric Organocatalysts
Self-Supported Chiral Catalysts for Heterogeneous Enantioselective Reactions
Probing the Chemistry of N-tert-Butanesulfinyl Imines: New Advances in Asymmetric Synthesis of Chira
Development of Highly Efficient Chiral Catalysts for Homo and Heterogeneous Asymmetric Reactions
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Access to Enantioenriched Homoallylamines by Efficient Asymmetric Nucleophilic Allylation of N-Sulfi
Development of Highly Efficient Chiral Catalysts for Asymmetric Reactions: Practical Synthesis of Ch
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A Self-Supporting Strategy for Chiral Catalyst Immobilization
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BINOL-Ti 催化的胺类化合物对环氧化合物的不对称开环反应研究 —— 机理与应用
New Chiral Diene Ligands for Asymmetric Catalysis
New Chiral Diene Ligands with Bicyclo[3,3,0] Backbone for Asymmetric Catalysis
Development of Homogeneous and Heterogeneous Asymmetric Catalysts for Practical Enantioselective Rea
Design of New Chiral Diene Ligands for Asymmetric Catalysis