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手性螺环亚磷酸酯配体的合成及其均相不对称氢甲酰化反应研究
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作者 薛松 李智 +2 位作者 邓金根 宓爱巧 蒋耀忠 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 1999年第S1期217-217,共1页
关键词 甲酰反应 亚磷酸酯 不对称甲酰 有机 中国科学院 手性匹配 配体 螺环 区域选择性 氢甲酸化反应
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In_2O_3-modified Cu/SiO_2 as an active and stable catalyst for the hydrogenation of methyl acetate to ethanol 被引量:11
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作者 Yu Zhang Chenliang Ye +2 位作者 Cuili Guo Changna Gan Xinmeng Tong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第1期99-108,共10页
A series of indium oxide‐modified Cu/SiO2catalysts were synthesized and used to produce ethanol via methyl acetate hydrogenation.In‐Cu/SiO2catalyst containing1.0wt%In2O3exhibited the best catalytic activity and stab... A series of indium oxide‐modified Cu/SiO2catalysts were synthesized and used to produce ethanol via methyl acetate hydrogenation.In‐Cu/SiO2catalyst containing1.0wt%In2O3exhibited the best catalytic activity and stability.The physicochemical properties of the synthesized catalysts were investigated using several characterization methods and the results showed that introducing suitable indium to Cu/SiO2increased the copper dispersion,diminished the copper crystallite size,and enriched the surface Cu+concentration.Furthermore,the Cu/SiO2catalyst gradually deactivated during the stability test,which was mainly attributed to copper sintering and the valence change in surface copper species.In contrast,indium addition can inhibit the thermal transmigration and accumulation of copper nanoparticles to stabilize the catalyst.?2018,Dalian Institute of Chemical Physics,Chinese Academy of Sciences.Published by Elsevier B.V.All rights reserved. 展开更多
关键词 Methyl acetate HYDROGENATION INDIUM Cu/SiO2 catalyst ETHANOL
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Efficient hydrocarboxylation of alkynes based on carbodiimide‐regulated in situ CO generation from HCOOH:An alternative indirect utilization of CO_(2)
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作者 Shu-Mei Xia Zhi-Wen Yang +2 位作者 Kai-Hong Chen Ning Wang Liang-Nian He 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1642-1651,共10页
The role of carbodiimide as dehydrant in the chemo‐,regio‐and stereoselective Pd(Ⅱ/0)‐catalyzed hydrocarboxylation of various alkynes with HCOOH releasing CO in situ is reported for the first time to obtainα,β‐... The role of carbodiimide as dehydrant in the chemo‐,regio‐and stereoselective Pd(Ⅱ/0)‐catalyzed hydrocarboxylation of various alkynes with HCOOH releasing CO in situ is reported for the first time to obtainα,β‐unsaturated carboxylic acids.Both symmetrical and unsymmetrical monoalkynes show good reactivity.Importantly,2,2’‐(1,4‐phenylene)diacrylic acid can also be synthesized in high yield through the dihydrocarboxylation of 1,4‐diethynylbenzene.Besides,an excellent result in gram scale experiment and TON up to 900 can be obtained,displaying the efficiency of this protocol.Notably,regulating the types and concentrations of dehydrant can control the CO generation,avoiding directly operating toxic CO and circumventing sensitivity issue to the CO amount.On the basis of the attractive features of formic acid including easy preparation through CO_(2) hydrogenation and efficient liberation of CO,this protocol using formic acid as bridging reagent between CO_(2) and CO can be perceived as an indirect utilization of CO_(2),offering an alternative method for preparing acrylic acid analogues. 展开更多
关键词 CARBODIIMIDE HYDROCARBOXYLATION Formic acid CO_(2)indirect utilization α β‐Unsaturated carboxylic acids Synthetic method
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Highly regioselective hydroformylation of olefins with formic acid instead of toxic and flammable CO/H2
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作者 Dongfang Xu Baoguo Zhao 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第7期839-840,共2页
Hydroformylation is an atom-economic and highly efficient transformation from readily available olefins to various synthetically important carbonyl compounds[1].By using this transformation,the largest amount of fine ... Hydroformylation is an atom-economic and highly efficient transformation from readily available olefins to various synthetically important carbonyl compounds[1].By using this transformation,the largest amount of fine chemicals have been produced in the global chemical industry every year. 展开更多
关键词 instead carbonyl chemicals readily Highly palladium catalyzed challenging aldehyde subsequent
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