Decorating Zn2In2S5 with non-noble metal β-NiS for efficient photocatalytic hydrogen evolution

The development of earth-abundant non-precious metal cocatalysts to replace noble metal counterparts is critical for improving pristine photocatalyst performance and advancing the practical application of photocatalytic hydrogen production. In this study, a series of β-NiS-decorated pristine Zn 2 In 2 S 5 x% NiS/Zn 2 In 2 S 5 composite photocatalysts with different β-NiS loadings were fabricated via a facile ultrasonic-assisted deposition method, using non-precious β-NiS as a cocatalyst. All as-prepared x% NiS/Zn 2 In 2 S 5 composites showed significantly improved photocatalytic hydrogen evolution activity compared to pristine ZIS 5 . The optimized sample 15% NiS/Zn2In2S5 sample delivered a hydrogen production rate of 22.94 mmol g −1 h −1 , 6.75 times that of pure ZIS 5 . The remarkably improved photocatalytic hydrogen evolution activity of x% NiS/ZIS 5 composite photocatalyst is attributed to the synergistic effect from loaded β-NiS cocatalyst. It enhances light harvesting, and enables efficient separation of photogenerated carriers. This work provides a valuable reference for constructing high-performance composite photocatalysts for hydrogen production using non-noble metal cocatalysts coupled with pristine semiconductors.

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Publication Details

Journal
International Journal of Hydrogen Energy
Published
2026-09-11
DOI
https://doi.org/10.1016/j.ijhydene.2026.157533
Primary Topic
Advanced Photocatalysis Techniques
Type
article
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article

Decorating Zn2In2S5 with non-noble metal β-NiS for efficient photocatalytic hydrogen evolution

Chunrong Li, Tongyan Ren, Ping He, Hongxia Chen et al.
International Journal of Hydrogen Energy
Advanced Photocatalysis Techniques
article

Decorating Zn2In2S5 with non-noble metal β-NiS for efficient photocatalytic hydrogen evolution

Chunrong Li, Tongyan Ren, Ping He, Hongxia Chen, Geng Tang
article en

Abstract

The development of earth-abundant non-precious metal cocatalysts to replace noble metal counterparts is critical for improving pristine photocatalyst performance and advancing the practical application of photocatalytic hydrogen production. In this study, a series of β-NiS-decorated pristine Zn 2 In 2 S 5 x% NiS/Zn 2 In 2 S 5 composite photocatalysts with different β-NiS loadings were fabricated via a facile ultrasonic-assisted deposition method, using non-precious β-NiS as a cocatalyst. All as-prepared x% NiS/Zn 2 In 2 S 5 composites showed significantly improved photocatalytic hydrogen evolution activity compared to pristine ZIS 5 . The optimized sample 15% NiS/Zn2In2S5 sample delivered a hydrogen production rate of 22.94 mmol g −1 h −1 , 6.75 times that of pure ZIS 5 . The remarkably improved photocatalytic hydrogen evolution activity of x% NiS/ZIS 5 composite photocatalyst is attributed to the synergistic effect from loaded β-NiS cocatalyst. It enhances light harvesting, and enables efficient separation of photogenerated carriers. This work provides a valuable reference for constructing high-performance composite photocatalysts for hydrogen production using non-noble metal cocatalysts coupled with pristine semiconductors.

International Journal of Hydrogen EnergyVol. 275
North Sichuan Medical University (CN), China West Normal University (CN)
Openalex Percentile: Top 29%
Advanced Photocatalysis Techniques
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