催化作用
化学
合理设计
选择性
氧化物
金属
多相催化
纳米颗粒
化学工程
纳米技术
有机化学
材料科学
工程类
作者
John C. Matsubu,Shu-yi Zhang,Leo DeRita,Nebojša Marinković,Jingguang G. Chen,George W. Graham,Xiaoqing Pan,Phillip Christopher
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2016-09-19
卷期号:9 (2): 120-127
被引量:701
摘要
The optimization of supported metal catalysts predominantly focuses on engineering the metal site, for which physical insights based on extensive theoretical and experimental contributions have enabled the rational design of active sites. Although it is well known that supports can influence the catalytic properties of metals, insights into how metal-support interactions can be exploited to optimize metal active-site properties are lacking. Here we utilize in situ spectroscopy and microscopy to identify and characterize a support effect in oxide-supported heterogeneous Rh catalysts. This effect is characterized by strongly bound adsorbates (HCOx) on reducible oxide supports (TiO2 and Nb2O5) that induce oxygen-vacancy formation in the support and cause HCOx-functionalized encapsulation of Rh nanoparticles by the support. The encapsulation layer is permeable to reactants, stable under the reaction conditions and strongly influences the catalytic properties of Rh, which enables rational and dynamic tuning of CO2-reduction selectivity.
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