催化作用
乙炔
材料科学
变化(天文学)
熵(时间箭头)
化学工程
热稳定性
管理策略
热力学
化学
业务
有机化学
物理
工程类
天体物理学
工商管理
作者
Fengyu Zhang,Yijun Zhang,Jiayi Wang,Qian Wang,Haoxiang Xu,Dianqing Li,Junting Feng,Xue Duan
标识
DOI:10.1002/anie.202412637
摘要
Abstract The dynamic structure evolution of heterogeneous catalysts during reaction has gained great attention recently. However, controllably manipulating dynamic process and then feeding back catalyst design to extend the lifetime remains challenging. Herein, we proposed an entropy variation strategy to develop a dynamic CuZn−Co/HEOs catalyst, in which the non‐active Co nano‐islands play a crucial role in controlling thermal effect via timely capturing and utilizing reaction heat generated on the adjacent active CuZn alloys, thus solving the deactivation problem of Cu‐based catalysts. Specifically, heat sensitive Co nano‐islands experienced an entropy increasing process of slowly redispersion during the reaction. Under such heat dissipation effect, the CuZn−Co/HEOs catalyst exhibited 95.7 % ethylene selectivity and amazing long‐term stability (>530 h) in the typical exothermic acetylene hydrogenation. Aiming at cultivating it as a catalyst with promising industrial potential, we proposed a simple regeneration approach via an entropy decreasing process.
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