:Conversion of CO2 to ethanol by using a metal-organic framework catalyst论文

:Conversion of CO2 to ethanol by using a metal-organic framework catalyst论文

本文主要研究内容

作者(2019)在《Conversion of CO2 to ethanol by using a metal-organic framework catalyst》一文中研究指出:With the development of CO2 capture technology, CO2 can become an attractive C1 resource for synthesizing commodity chemicals. For example, direct conversion of CO2 to ethanol is of interest, but this process is also quite challenging, because it requires both the formation of one C–C bond and the retention of one C–O bond [1]. A combination of dual active sites, one for methanol formation and one for C–C coupling has been widely investigated for such a conversion, but an unbalanced rate in the two steps frequently leads to the formation of either methanol or long-chain hydrocarbons [2].

Abstract

With the development of CO2 capture technology, CO2 can become an attractive C1 resource for synthesizing commodity chemicals. For example, direct conversion of CO2 to ethanol is of interest, but this process is also quite challenging, because it requires both the formation of one C–C bond and the retention of one C–O bond [1]. A combination of dual active sites, one for methanol formation and one for C–C coupling has been widely investigated for such a conversion, but an unbalanced rate in the two steps frequently leads to the formation of either methanol or long-chain hydrocarbons [2].

论文参考文献

  • [1].Pd nanoparticles immobilized on MIL-53(Al) as highly e ective bifunctional catalysts for oxidation of liquid methanol to methyl formate[J]. Jian-Fang Liu,Jin-Cheng Mu,Rong-Xian Qin,Sheng-Fu Ji.  Petroleum Science.2019(04)
  • [2].Synthesis of graphene-supported monodisperse Au Pd bimetallic nanoparticles for electrochemical oxidation of methanol[J]. 肖红君,申承民,时雪钊,杨苏东,田园,林少雄,高鸿钧.  Chinese Physics B.2015(07)
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  • 论文详细介绍

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