催化作用
甲烷
化学
联轴节(管道)
乙醇
金属
甲烷氧化偶联
乙醇燃料
化学工程
无机化学
光化学
材料科学
过程(计算)
多相催化
金属有机骨架
过渡金属
反应机理
燃料电池
作者
Wentao Hao,Zi Wang,Hui Cao,Jia Qiao,Qingde Zhang,Kun Xiong,Xingchen Liu,Yong Qin,Chaoqiu Chen
标识
DOI:10.1021/acscatal.6c00933
摘要
The selective oxidation of CH 4 to C 2 oxygenates under mild conditions is a significant pathway for CH 4 valorization, yet it remains extremely challenging due to the inertness of methane, the competing overoxidation, and sluggish C–C coupling kinetics. Here, we show that the N,S co-doped carbon nanotube-supported Fe 5 clusters catalyst (Fe 5 /NSC) with adjacent Fe sites drives sequential C–H activation and C–C coupling to ethanol with a C 2 H 5 OH productivity of 1939.6 μmol·g cat –1 ·h –1 and a selectivity of 83.9% at 25 °C and 0.5 MPa CH 4 without the assistance of CO. Comprehensive experimental investigation and density functional theory calculations reveal the critical role of adjacent Fe sites in the selective formation of C 2 H 5 OH. The adjacent Fe sites featured in Fe 5 /NSC synergistically facilitate the dissociation and/or partial oxidation of CH 4 to distinct C 1 intermediates (*OCH 2 and *CH 3 ) and subsequent OCH x –CH x coupling between them to form the key CH 3 CH 2 O* intermediate for C 2 H 5 OH production, as opposed to the conventional CH x –CO coupling pathway that primarily yields acetic acid.
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