催化作用
钴
甲醇
选择性
碳氢化合物
离解(化学)
化学
反应性(心理学)
配体(生物化学)
合成气
组合化学
化学工程
有机化学
医学
工程类
病理
生物化学
受体
替代医学
作者
Lingxiang Wang,Erjia Guan,Yan Wang,Yan Wang,Zhongmiao Gong,Yi Cui,Xiangju Meng,Bruce C. Gates,Feng‐Shou Xiao
标识
DOI:10.1038/s41467-020-14817-9
摘要
Abstract The reaction pathways on supported catalysts can be tuned by optimizing the catalyst structures, which helps the development of efficient catalysts. Such design is particularly desired for CO 2 hydrogenation, which is characterized by complex pathways and multiple products. Here, we report an investigation of supported cobalt, which is known for its hydrocarbon production and ability to turn into a selective catalyst for methanol synthesis in CO 2 hydrogenation which exhibits good activity and stability. The crucial technique is to use the silica, acting as a support and ligand, to modify the cobalt species via Co‒O‒SiO n linkages, which favor the reactivity of spectroscopically identified *CH 3 O intermediates, that more readily undergo hydrogenation to methanol than the C‒O dissociation associated with hydrocarbon formation. Cobalt catalysts in this class offer appealing opportunities for optimizing selectivity in CO 2 hydrogenation and producing high-grade methanol. By identifying this function of silica, we provide support for rationally controlling these reaction pathways.
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