Synergistic Effect of Nitrogen-doped CdIn₂S₄(Vs) and Andersontype Polyoxometalate on Enhanced Photocatalytic Hydrogen Production

Abstract

The development of clean and sustainable energy technologies represents a critical focus in contemporary scientific research. In this study, we construct an efficient photocatalytic hydrogen evolution system using nitrogendoped, sulfur vacancy CdIn₂S₄ as the catalyst and (NH 4 ) 4 [NiMo 6 O 24 H 6 ]•5H 2 O (NiMo₆) as co-catalyst. Among all synthesized catalysts, the NiMo₆/10N-CdIn₂S₄(Vs) composite exhibits superior photocatalytic hydrogen evolution activity, achieving an exceptional production rate of 30.88 mmol•g⁻¹•h⁻¹, which is the highest activity among CdIn₂S₄-based systems. Ndoping and S-vacancies boost the light absorption and charge separation of CdIn₂S₄, while the polyoxometalate (POM) further enhances performance by facilitating electron transfer in the system, minimizing recombination of charge carriers and increasing stability of the photocatalytic system.

Supplementary files

Article information

Article type
Communication
Submitted
29 Aug 2025
Accepted
01 Oct 2025
First published
02 Oct 2025

Chem. Commun., 2025, Accepted Manuscript

Synergistic Effect of Nitrogen-doped CdIn₂S₄(Vs) and Andersontype Polyoxometalate on Enhanced Photocatalytic Hydrogen Production

X. Dong, X. Yang, Y. Liu, X. Zhao, H. Yang and Y. Ding, Chem. Commun., 2025, Accepted Manuscript , DOI: 10.1039/D5CC04987C

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