催化作用
纳米晶
化学
双层
氧化物
串联
氧化铈
金属
甲醇
铂金
纳米技术
化学工程
材料科学
膜
有机化学
复合材料
工程类
生物化学
作者
Yusuke Yamada,Chia‐Kuang Tsung,Wenyu Huang,Ziyang Huo,Susan E. Habas,Tetsuro Soejima,César Aliaga,Gábor A. Somorjai,Peidong Yang
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2011-04-07
卷期号:3 (5): 372-376
被引量:488
摘要
Supported catalysts are widely used in industry and can be optimized by tuning the composition and interface of the metal nanoparticles and oxide supports. Rational design of metal-metal oxide interfaces in nanostructured catalysts is critical to achieve better reaction activities and selectivities. We introduce here a new class of nanocrystal tandem catalysts that have multiple metal-metal oxide interfaces for the catalysis of sequential reactions. We utilized a nanocrystal bilayer structure formed by assembling platinum and cerium oxide nanocube monolayers of less than 10 nm on a silica substrate. The two distinct metal-metal oxide interfaces, CeO(2)-Pt and Pt-SiO(2), can be used to catalyse two distinct sequential reactions. The CeO(2)-Pt interface catalysed methanol decomposition to produce CO and H(2), which were subsequently used for ethylene hydroformylation catalysed by the nearby Pt-SiO(2) interface. Consequently, propanal was produced selectively from methanol and ethylene on the nanocrystal bilayer tandem catalyst. This new concept of nanocrystal tandem catalysis represents a powerful approach towards designing high-performance, multifunctional nanostructured catalysts.
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