双金属片
催化作用
光化学
乙烯
甲烷
离解(化学)
化学
级联
纳米颗粒
光催化
协同催化
纳米技术
化学工程
组合化学
材料科学
有机化学
色谱法
工程类
作者
Yinfeng Wang,Ming‐Yu Qi,Marco Conte,Zi‐Rong Tang,Yi‐Jun Xu
标识
DOI:10.1002/anie.202407791
摘要
Abstract Light‐driven photoredox catalysis presents a promising approach for the activation and conversion of methane (CH 4 ) into high value‐added chemicals under ambient conditions. However, the high C−H bond dissociation energy of CH 4 and the absence of well‐defined C−H activation sites on catalysts significantly limit the highly efficient conversion of CH 4 toward multicarbon (C 2+ ) hydrocarbons, particularly ethylene (C 2 H 4 ). Herein, we demonstrate a bimetallic design of Ag nanoparticles (NPs) and Pd single atoms (SAs) on ZnO for the cascade conversion of CH 4 into C 2 H 4 with the highest production rate compared with previous works. Mechanistic studies reveal that the synergistic effect of Ag NPs and Pd SAs, upon effecting key bond‐breaking and ‐forming events, lowers the overall energy barrier of the activation process of both CH 4 and the resulting C 2 H 6 , constituting a truly synergistic catalytic system to facilitate the C 2 H 4 generation. This work offers a novel perspective on the advancement of photocatalytic directional CH 4 conversion toward high value‐added C 2+ hydrocarbons through the subtle design of bimetallic cascade catalyst strategy.
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