双功能
沸石
铂金
催化作用
材料科学
丝光沸石
双功能催化剂
化学工程
化学
金属
无机化学
有机化学
冶金
工程类
作者
Kang Cheng,Lars I. van der Wal,Hideto Yoshida,Jogchum Oenema,Justine Harmel,Zhaorong Zhang,Glenn J. Sunley,Jovana Zečević,K.P. de Jong
标识
DOI:10.1002/anie.201915080
摘要
Abstract Improving product selectivity by controlling the spatial organization of functional sites at the nanoscale is a critical challenge in bifunctional catalysis. We present a series of composite bifunctional catalysts consisting of one‐dimensional zeolites (ZSM‐22 and mordenite) and a γ‐alumina binder, with platinum particles controllably deposited either on the alumina binder or inside the zeolite crystals. The hydroisomerization of n ‐heptane demonstrates that the catalysts with platinum particles on the binder, which separates platinum and acid sites at the nanoscale, leads to a higher yield of desired isomers than catalysts with platinum particles inside the zeolite crystals. Platinum particles within the zeolite crystals impose pronounced diffusion limitations on reaction intermediates, which leads to secondary cracking reactions, especially for catalysts with narrow micropores or large zeolite crystals. These findings extend the understanding of the “intimacy criterion” for the rational design of bifunctional catalysts for the conversion of low‐molecular‐weight reactants.
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