Issue 23, 2025

Visible-light-driven green hydrogen and hydrogen peroxide production using a 2D porous organic polymer engineered with 2D SnS2

Abstract

The transformation of solar radiation into chemical energy or valuable chemical compounds has garnered significant research interest, particularly in light of the global energy crisis. Hydrogen and hydrogen peroxide serve as sustainable energy sources in fuel cells, producing electricity with zero carbon emissions. Recently, the eco-friendly synthesis of H2 and H2O2 from water and oxygen using porous organic polymers (POPs) as photocatalysts has drawn considerable attention. However, their applications have been limited due to low absorption of visible light and the rapid recombination of photoinduced charge carriers, while noble metal co-catalysts remain essential in all POP-based photocatalysts to achieve high rates of hydrogen evolution and hydrogen peroxide production, as well as to enhance charge separation in semiconductor photocatalysts. In this study, we demonstrate a more effective heterojunction photocatalyst—2D–2D SnS2@TAPA-BPDA—which has a significant effect on photocatalytic H2 evolution and H2O2 production. When exposed to visible light, the SnS2@TAPA-BPDA composite achieves a hydrogen evolution rate of 1818.8 μmol h−1 g−1, which is approximately 30 times higher than that of the bare TAPA-BPDA POP. Similarly, for hydrogen peroxide production, the same catalyst reaches 3013.3 μmol h−1 g−1, nearly 14 times greater than the bare catalyst. These results highlight the significant enhancement in photocatalytic H2 evolution and H2O2 generation, leading to highly effective solar-to-chemical energy conversion.

Graphical abstract: Visible-light-driven green hydrogen and hydrogen peroxide production using a 2D porous organic polymer engineered with 2D SnS2

Supplementary files

Article information

Article type
Paper
Submitted
23 Aug 2025
Accepted
20 Oct 2025
First published
22 Oct 2025

Sustainable Energy Fuels, 2025,9, 6479-6491

Visible-light-driven green hydrogen and hydrogen peroxide production using a 2D porous organic polymer engineered with 2D SnS2

M. Sarkar, P. Chakrabortty, R. V. Singh, M. R. Pai, M. Alam, Sk. M. Islam and A. M. Tawfeek, Sustainable Energy Fuels, 2025, 9, 6479 DOI: 10.1039/D5SE01138H

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