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Updated: Jan 20, 2026

Preparation of Large-area Vertical 2D Crystal Hetero-structures Through the Sulfurization of Transition Metal Films for Device Fabrication
Published on: November 28, 2017
Vertical 1T/2H-WS2 nanoflakes grown on 2D-C3N4: Multiple charge transfer channels designed for enhanced
Jing Huang1, Junwei Mei2, Jianxin Han2
1School of Materials Science and Engineering, Ocean University of China, Qingdao 266100, PR China; National Supercomputer Research Center of Advanced Materials, Advanced Materials Institute, Qilu University of Technology(Shandong Academy of Sciences), Jinan 250014, PR China.
Abstract:
Two-dimensional (2D) sulfides have attracted much attention as a promising photocatalyst for the hydrogen evolution reaction. In this work, a highly active and stable vertical 1T/2H-WS2 nanoflakes grown on 2D-C3N4 with multiple charge transfer channels through a simple and efficient colloidal strategy is reported. This three-dimensional (3D) composite presents the usual semiconducting 2H phase WS2 as well as the unusual distorted octahedral 1T phase WS2, which vertically connect 2D-C3N4 constructing an interesting 3D structure with more active sites. The H2 production rate of the optimal product has reached 350.75 μmol·g-1·h-1, which is 66.8 and 8.2 times higher than the rate of 2D-C3N4 and 1T/2H-WS2 respectively. The predominant charge transfer occurs between 2D-C3N4 and 2H-WS2 nanoflakes due to their vertical connection and the matched energy structure while the existence of the metallic 1T-WS2 acts as a cocatalyst with an enhanced conductivity to provide multiple charge transfer channels over its basal and edge sites for H+ reduction.
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