罗丹明B
光催化
光电流
材料科学
电子转移
载流子
催化作用
肖特基势垒
光化学
化学
纳米技术
光电子学
有机化学
二极管
作者
Hanxiang Chen,Junjie Yuan,Wenshu Yang,Yahui Yu,Yanhua Song,Yuanbin She,Zhigang Chen,Baibiao Huang,Yan Zhao,Hui Xu
标识
DOI:10.1002/pssa.202100171
摘要
Developing efficient, highly stable, and cheap photocatalysts are the keys to the industrial application of photocatalytic techniques. For the photocatalytic reactions, how to promote the separating of photogenerated carriers and construct active sites are crucial challenges. Herein, Ni 3 C nanoparticles are loaded on 2D g‐C 3 N 4 as electron‐transferring centers. The mechanism of interface charge transfer in the photocatalytic reactions is studied. Benefited from the formed Schottky junction and the special activation effect of Ni 3 C, Ni 3 C/2D g‐C 3 N 4 owns better separation efficiency of carriers and more active sites to produce ⋅O 2 − and ⋅OH species, which can enhance the photocatalytic activity. Finally, a highest rate of 90.3% for rhodamine B (Rh B) degradation is realized by the optimal proportion of Ni 3 C/2D g‐C 3 N 4 . In addition, the increased photocurrent intensity and stronger signals of active species of Ni 3 C/2D g‐C 3 N 4 indicate the dual functions of Ni 3 C in both promoting the separation of carriers and the production of the active oxidation species.
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