光催化
锐钛矿
催化作用
甲烷
纳米材料基催化剂
激进的
甲烷氧化偶联
材料科学
光化学
多相催化
吸附
化学工程
化学
有机化学
工程类
作者
Huizhen Zhang,Pengfei Sun,Xiaozhen Fei,Xuejiao Wu,Zongyi Huang,Wanfu Zhong,Qiaobin Gong,Zheng Yan-ping,Qinghong Zhang,Shunji Xie,Gang Fu,Ye Wang
标识
DOI:10.1038/s41467-024-48866-1
摘要
Abstract Photocatalytic coupling of methane to ethane and ethylene (C 2 compounds) offers a promising approach to utilizing the abundant methane resource. However, the state-of-the-art photocatalysts usually suffer from very limited C 2 formation rates. Here, we report our discovery that the anatase TiO 2 nanocrystals mainly exposing {101} facets, which are generally considered less active in photocatalysis, demonstrate surprisingly better performances than those exposing the high-energy {001} facet. The palladium co-catalyst plays a pivotal role and the Pd 2+ site on co-catalyst accounts for the selective C 2 formation. We unveil that the anatase {101} facet favors the formation of hydroxyl radicals in aqueous phase near the surface, where they activate methane molecules into methyl radicals, and the Pd 2+ site participates in facilitating the adsorption and coupling of methyl radicals. This work provides a strategy to design efficient nanocatalysts for selective photocatalytic methane coupling by reaction-space separation to optimize heterogeneous-homogeneous reactions at solid-liquid interfaces.
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