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Construction of g-C_3N_4/BCN two-dimensional heterojunction photoanode for enhanced photoelectrochemical water splitting

机译:用于增强光电化学水分解的g-C_3N_4 / BCN二维异质结光电阳极的构建

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Two-dimensional heterojunction g-C3N4/BCN was constructed via thermal polymerization process. The formed two-dimensional heterostructure could enhance the interfacial contact area between BCN and porous g-C3N4 as well as shorten the photogenerated charge carriers transfer time and distance. The two-dimensional g-C3N4/BCN heterojunction photoanode shows enhanced photoelectrochemical (PEC) performance for water splitting under visible-light irradiation, which primarily originates from the improved charge transfer and separation, and prolonged lifetime of electrons. Under the visible light irradiation, the g-C3N4/BCN heterojunction sample yields a photocurrent density of similar to 0.62 mA cm(-2) at 1.23 V vs. RHE, which is about eight times as many as that of CN (0.08 mA cm(-2)) electrode at the same conditions. In addition, the possible electron transfer model and mechanism of PEC water splitting for H-2 evolution have been discussed. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过热聚合工艺制备了二维异质结g-C3N4 / BCN。形成的二维异质结构可以增加BCN与多孔g-C3N4的界面接触面积,并缩短光生载流子的转移时间和距离。二维g-C3N4 / BCN异质结光电阳极在可见光照射下显示出增强的水分解光电化学(PEC)性能,这主要源于电荷转移和分离的改善以及电子寿命的延长。在可见光照射下,g-C3N4 / BCN异质结样品在1.23 V vs. RHE下产生的光电流密度类似于0.62 mA cm(-2),约为CN(0.08 mA cm)的八倍。 (-2))电极在相同条件下。此外,还讨论了可能的电子转移模型和PEC分解H-2的机理。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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