均分解
异构化
离解(化学)
光化学
催化作用
化学
氢化物
氢
激进的
有机化学
作者
Chengsheng Yang,Sicong Ma,Yongmei Liu,Lihua Wang,Desheng Yuan,Wei-Peng Shao,Lunjia Zhang,Fan Yang,Tiejun Lin,Hongxin Ding,Heyong He,Zhi‐Pan Liu,Yong Cao,Yifeng Zhu,Xinhe Bao
标识
DOI:10.1038/s41467-024-44711-7
摘要
Abstract The limited surface coverage and activity of active hydrides on oxide surfaces pose challenges for efficient hydrogenation reactions. Herein, we quantitatively distinguish the long-puzzling homolytic dissociation of hydrogen from the heterolytic pathway on Ga 2 O 3 , that is useful for enhancing hydrogenation ability of oxides. By combining transient kinetic analysis with infrared and mass spectroscopies, we identify the catalytic role of coordinatively unsaturated Ga 3+ in homolytic H 2 dissociation, which is formed in-situ during the initial heterolytic dissociation. This site facilitates easy hydrogen dissociation at low temperatures, resulting in a high hydride coverage on Ga 2 O 3 (H/surface Ga 3+ ratio of 1.6 and H/OH ratio of 5.6). The effectiveness of homolytic dissociation is governed by the Ga-Ga distance, which is strongly influenced by the initial coordination of Ga 3+ . Consequently, by tuning the coordination of active Ga 3+ species as well as the coverage and activity of hydrides, we achieve enhanced hydrogenation of CO 2 to CO, methanol or light olefins by 4-6 times.
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