Synthesis of Phase Junction Cadmium Sulfide Photocatalyst under Sulfur‐Rich Solution System for Efficient Photocatalytic Hydrogen Evolution

Author:

Zheng Xinlong12,Song Yiming12,Liu Yuhao1,Li Jing1,Yang Yingjie1,Wu Daoxiong1,Liu Weifeng2,Shen Yijun1,Tian Xinlong1ORCID

Affiliation:

1. State Key Laboratory of Marine Resource Utilization in South China Sea Hainan Provincial Key Lab of Fine Chemistry School of Science Hainan University Haikou 570228 China

2. Mechanical and Electrical Engineering College Hainan University Haikou 570228 China

Abstract

AbstractPhotocatalyst with excellent semiconductor properties is the key point to realize the efficient photocatalytic hydrogen evolution (PHE). As a representative binary metal sulfide (BMS) semiconductor, cadmium sulfide (CdS) possesses suitable bandgap of 2.4 eV and negative conduction band potential, which has a great potential to realize efficient visible‐light PHE performance. In this work, CdS with unique cubic/hexagonal phase junction is facilely synthesized through a sulfur‐rich butyldithiocarbamate acid (BDCA) solution process. The results illustrate that the phase junction can efficiently enhance the separation and transfer of photogenerated electron–hole pairs, resulting in an excellent PHE performance. In addition, the sulfur‐rich property of BDCA solution leads to the absence of additional sulfur sources during the synthesis of CdS photocatalyst, which greatly simplifies the fabrication process. The optimal PHE rate of the BDCA‐synthesized phase junction CdS photocatalyst is 7.294 mmol g–1 h–1 and exhibits a favorable photostability. Moreover, density function theory calculations indicated that the apparent redistribution of charge density in the cubic/hexagonal phase junction regions gives a suitable hydrogen adsorption capacity, which is responsible for the enhanced PHE activity.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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