异质结
氮化碳
堆积
光催化
材料科学
电子转移
半导体
人工光合作用
氮化物
电化学
金属
纳米技术
光电子学
光化学
化学工程
催化作用
电极
化学
物理化学
有机化学
冶金
工程类
图层(电子)
作者
Xingwang Zhu,Hangmin Xu,Jinyuan Liu,Chuanzhou Bi,Jianfeng Tian,Kang Zhong,Bin Wang,Penghui Ding,Xiaozhi Wang,Paul K. Chu,Hui Xu,Jianning Ding
标识
DOI:10.1002/advs.202307192
摘要
Abstract Enhancing charge separation in semiconductor photocatalysts is a major challenge for efficient artificial photosynthesis. Herein, a compact heterojunction is designed by embedding half‐metallic C(CN) 3 (hm‐CN) hydrothermally in BiOBr (BOB) as the backbone. The interface between hm‐CN and BOB is seamless and formed by covalent bonding to facilitate the transmission of photoinduced electrons from BOB to hm‐CN. The transient photocurrents and electrochemical impedance spectra reveal that the modified composite catalyst exhibits a larger electron transfer rate. The photocatalytic activity of hm‐CN/BOB increases significantly as indicated by a CO yield that is about four times higher than that of individual components. Density‐functional theory calculations verify that the heterojunction improves electron transport and decreases the reaction energy barrier, thus promoting the overall photocatalytic CO 2 conversion efficiency. The half‐metal nitride coupled semiconductor heterojunctions might have large potential in artificial photosynthesis and related applications.
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