催化作用
铜
材料科学
介孔二氧化硅
化学工程
乙二醇
介孔材料
金属
氧化物
离解(化学)
氧化铜
过渡金属
氢
保形涂层
协同催化
无机化学
涂层
纳米技术
化学
有机化学
冶金
工程类
作者
Chaofa Xu,Chen Guangxu,Yun Zhao,Pengxin Liu,Xinping Duan,Lin Gu,Gang Fu,Youzhu Yuan,Nanfeng Zheng
标识
DOI:10.1038/s41467-018-05757-6
摘要
Abstract Metal-support interaction is one of the most important parameters in controlling the catalysis of supported metal catalysts. Silica, a widely used oxide support, has been rarely reported as an effective support to create active metal-support interfaces for promoting catalysis. In this work, by coating Cu microparticles with mesoporous SiO 2 , we discover that Cu/SiO 2 interface creates an exceptional effect to promote catalytic hydrogenation of esters. Both computational and experimental studies reveal that Cu–H δ− and SiO–H δ+ species would be formed at the Cu–O–SiO x interface upon H 2 dissociation, thus promoting the ester hydrogenation by stablizing the transition states. Based on the proposed catalytic mechanism, encapsulting copper phyllosilicate nanotubes with mesoporous silica followed by hydrogen reduction is developed as an effective method to create a practical Cu nanocatalyst with abundant Cu-O-SiO x interfaces. The catalyst exhibits the best performance in the hydrogenation of dimethyl oxalate to ethylene glycol among all reported Cu catalysts.
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