路易斯酸
纳米棒
催化作用
沮丧的刘易斯对
材料科学
金属
氧化物
多孔性
化学
表面能
化学工程
纳米技术
物理化学
有机化学
工程类
作者
Sai Zhang,Zheng‐Qing Huang,Yuanyuan Ma,Wei Gao,Jing Li,Fangxian Cao,Lin Li,Chun‐Ran Chang,Yongquan Qu
摘要
Abstract Identification on catalytic sites of heterogeneous catalysts at atomic level is important to understand catalytic mechanism. Surface engineering on defects of metal oxides can construct new active sites and regulate catalytic activity and selectivity. Here we outline the strategy by controlling surface defects of nanoceria to create the solid frustrated Lewis pair (FLP) metal oxide for efficient hydrogenation of alkenes and alkynes. Porous nanorods of ceria ( PN -CeO 2 ) with a high concentration of surface defects construct new Lewis acidic sites by two adjacent surface Ce 3+ . The neighbouring surface lattice oxygen as Lewis base and constructed Lewis acid create solid FLP site due to the rigid lattice of ceria, which can easily dissociate H–H bond with low activation energy of 0.17 eV.
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