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基于甲磺酰基的磺酰胺-氨醇作为催化醛的不对称炔基化反应新配体(英文) 被引量:1
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作者 金薇 黄永波 万伯顺 《催化学报》 SCIE EI CAS CSCD 北大核心 2010年第9期1098-1102,共5页
以商业易得的(-)-麻黄碱、(+)-伪麻黄碱和各种手性氨醇为主要原料,经过简单的两步反应,合成了一系列基于甲磺酰基的磺酰胺-氨醇(SAA)配体,并将其用于催化苯乙炔基锌对醛的不对称加成反应.在没有Ti(OiPr)4等金属试剂的条件下,配体表现出... 以商业易得的(-)-麻黄碱、(+)-伪麻黄碱和各种手性氨醇为主要原料,经过简单的两步反应,合成了一系列基于甲磺酰基的磺酰胺-氨醇(SAA)配体,并将其用于催化苯乙炔基锌对醛的不对称加成反应.在没有Ti(OiPr)4等金属试剂的条件下,配体表现出较好的不对称诱导能力,取得了高达83%ee. 展开更多
关键词 磺酰胺-氨醇配体 不对称加成 炔基化反应
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Selective arylation/annulation cascade reactions of 2-alkynylanilines with diaryliodonium salts
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作者 段英 杨艳良 +1 位作者 戴晓玉 李东密 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第11期1837-1840,共4页
An efficient Cu catalyzed selective arylation/annulation cascade reaction of 2-alkynylanilines with diaryliodonium salts was developed.This reaction was selective to N-arylation instead of C-arylation,which provides a... An efficient Cu catalyzed selective arylation/annulation cascade reaction of 2-alkynylanilines with diaryliodonium salts was developed.This reaction was selective to N-arylation instead of C-arylation,which provides a simple synthetic method for N-aryl indoles. 展开更多
关键词 Selective arylation ANNULATION Diaryliodonium salt 2-Alkynylaniline N-Aryl indole Cascade reaction
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Silver-catalyzed carboxylative cyclization of alkynic hydrazones with carbon dioxide
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作者 Wenzhen Zhang Yuqian Sun +2 位作者 Min Zhang Hui Zhou Xiaobing Lu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第8期1153-1159,共7页
The development of new catalytic methodologies to synthesize heterocyclic fine chemicals using carbon dioxide as a synthon has attracted considerable attention. Herein, we report the silver( I)-catalyzed carboxylative... The development of new catalytic methodologies to synthesize heterocyclic fine chemicals using carbon dioxide as a synthon has attracted considerable attention. Herein, we report the silver( I)-catalyzed carboxylative cyclization of a variety of alkynic hydrazones with carbon dioxide to produce the corresponding 1,3,4-oxadiazin-2-ones under mild reaction conditions. In this reaction, silver(I) salts play a π-Lewis acid role for the highly efficient activation of the alkyne moiety in the hydrazone substrates. Single-crystal X-ray analysis and NOE experiments confirm that the newly formed oxadiazinone products exhibit Z configuration. Based on control experiments and NMR studies, a mechanism including the formation of a reactive carbazate intermediate, electrophilic cyclization, and subsequent protonation is proposed. This study offers an efficient and atom- economical method for the synthesis of biologically important 1,3,4-oxadiazin-2-ones. 展开更多
关键词 Carbon dioxide Silver catalysis Carboxylative cyclization Alkynic hydrazine Oxadiazinone Homogeneous catalysis
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