材料科学
异质结
肖特基势垒
制氢
电子转移
石墨氮化碳
光化学
氮化碳
氢
肖特基二极管
光催化
光电子学
接受者
催化作用
分解水
化学
有机化学
物理
二极管
生物化学
凝聚态物理
作者
Zhaohui Huang,Hui Chen,Xuan He,Wei Fang,Weixin Li,Xing Du,Xianghui Zeng,Lei Zhao
标识
DOI:10.1021/acsami.1c12063
摘要
The low charge-transfer efficiency and slow surface reaction kinetics are the main factors affecting the performance of carbon nitride photocatalysts. Here, a Schottky heterostructure (WCN) was constructed by combining WC with porous carbon nitride nanosheets with a cyanide group (NCN). The Schottky junction provides a convenient way for photoinduced electrons to transfer and promotes the effective separation of photoinduced carriers. Furthermore, due to the good conductivity of WC and an electronic structure similar to Pt, the W atom in WC as the active site of hydrogen production can realize efficient reaction kinetics. In this way, the WCN Schottky heterostructure showed a 2.0- and 5.0-fold enhancement in photocatalytic H2 evolution as compared to the single NCN component under visible-light and near-infrared light irradiation. By combining with theoretical simulations, as an electron acceptor in the WCN heterostructure, WC can effectively improve the charge-transfer efficiency and also act as an active site for hydrogen production.
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