Fabrication of Stepped CeO 2 Nanoislands for Efficient Photocatalytic Methane Coupling
作者:Guangming Wang, Xiaowei Mu, Ruike Tan, Ziye Pan, Jiayang Li, Qingyun Zhan, Rong Fu, Shuyan Song, Lu Li · 发表于:ACS Catalysis · 年份:2023 · DOI:10.1021/acscatal.3c02192 · 被引用次数:43 · 研究领域:Catalytic Processes in Materials Science、Advanced Photocatalysis Techniques、Catalysis and Oxidation Reactions
Nonoxidative conversion of methane (NOCM) under mild conditions is a highly desirable technology for the low-carbon and atom-economical production of H 2 and value-added chemicals. Here, we report the fabrication of CeO 2 nanoisland patterns on the surface of Ce–Zr solid solutions. These ultrasmall CeO 2 nanoislands with abundant step-edge structures provide unprecedented methane adsorption and activation, achieving the highest methane conversion rate of 1517 μmol g –1 h –1 for photocatalytic NOCM to date. Density functional theory calculations revealed that the low-coordinated Ce–O units at the stepped CeO 2 (111) surface possess more open planar configurations, which facilitate the cleavage of methane C–H bonds via a distinct metal–CH 4 σ-complex mechanism that is energetically more favorable than the radical-like mechanism on the flat CeO 2 (111) surface. Moreover, the photocatalyst demonstrated a reversible and cooperative photoactivation process that enables the transition from the “resting state” to the “active state”, thereby enhancing the photoexcited charge separation efficiency and photocatalytic NOCM activities.