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Updated: Jan 15, 2026

Synthesis and Performance Evaluations of ZnCoS/ZnCdS with Twin Crystal Structure for Multifunctional Redox Photocatalysis in Energy Applications
Published on: July 25, 2025
Interfacial CoS bond-enhanced Mn0.3Cd0.7S/CoPB Schottky junction for photothermal-assisted photocatalytic hydrogen
Ruiqi Zhang1, Qinghua Liu1, Tao Wang1
1School of Materials Science and Engineering, Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, Liaocheng University, Liaocheng 252000, PR China.
Abstract:
Herein, a Mn0.3Cd0.7S/CoPB (MCS/CPB) composite with an interfacial CoS bond is successfully fabricated via an ultrasonic-assisted grinding method, forming a Schottky junction. The optimized MCS/CPB-5 achieves a remarkable hydrogen evolution rate of 96.8 ± 0.4 mmol g-1 h-1 under visible light, which is 4.12 times greater than that of pristine MCS. The integration of CoPB enhances near-infrared light absorption and photothermal conversion, thereby promoting efficient charge carrier separation and utilization. The formation of the Schottky junction suppresses charge recombination by facilitating directional electron transfer across the interface. Characterizations including Fourier-transform infrared spectroscopy, X-ray photoelectron spectroscopy, and density functional theory calculations confirm the presence of CoS bonding and elucidated the charge transfer pathway. This study presents a promising strategy for designing non-noble metal-based photocatalysts with improved hydrogen evolution performance through synergistic photothermal and interfacial engineering.
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