异质结
价带
材料科学
等离子体
光电子学
带隙
物理
量子力学
作者
Yanmei Zheng,Qiushi Ruan,JingXuan Ren,Xinli Guo,Yong Zhou,Boye Zhou,Qiang Xu,Qiuping Fu,Shaohua Wang,Ying Huang
标识
DOI:10.1016/j.apcatb.2022.122170
摘要
The practical application of graphitic carbon nitride (g-C3N4, CN) is restricted by its low photocatalytic activity and difficult recycling. Herein, we report a CN/Mn2O3 p-n heterojunction grown by a plasma-assisted liquid-based method using a special precursor complex of melamine-cyanuric acid supramolecular on fluorine-doped tin oxide (FTO) substrate. The as-grown CN/Mn2O3/FTO p-n heterojunction exhibits a significantly enhanced photoelectrochemical performance with a photocurrent density of 25 μA/cm2 compared with its powder form (0.9 μA/cm2) formed by common drop coating method,and a tunable valence band (VB) with excellent mechanical strength which is benefit for photocatalytic oxidation reaction and recovery. The formation of CN/Mn2O3/FTO p-n heterojunction can promote the transfer of photoelectrons due to an internal electric field at the interface of p-n junction, leading to the accumulation of electrons and holes in the VB of CN and conduction band (CB) of Mn2O3. The results have shed a light on promoting the practical application of CN, and the developed plasma-assisted liquid-based growth method can be extended to the preparation of other type of functional heterojunctions.
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