Issue 32, 2024

Enhancing photocatalytic hydrogen evolution from water splitting over CaTaO2N via engineering the surface of a platinum cocatalyst

Abstract

Cocatalyst loading is of critical importance in efficient photocatalytic water splitting over perovskite oxynitrides. Perovskite CaTaO2N was synthesized for enhancing photocatalytic hydrogen evolution via decoration of a Pt cocatalyst by impregnation–reduction and photodeposition methods. The Pt-loaded CaTaO2N photocatalyst evolves 6.4 μmol H2 per hour, with an apparent quantum yield as high as 0.67% at a wavelength of 420 nm. Decorating the cocatalyst with uniform dispersion and intimate contact onto the surface of narrow-bandgap perovskite oxynitrides is an efficient method to upgrade photocatalytic hydrogen evolution from water splitting.

Graphical abstract: Enhancing photocatalytic hydrogen evolution from water splitting over CaTaO2N via engineering the surface of a platinum cocatalyst

Supplementary files

Article information

Article type
Paper
Submitted
04 Jul 2024
Accepted
15 Jul 2024
First published
16 Jul 2024

New J. Chem., 2024,48, 14298-14304

Enhancing photocatalytic hydrogen evolution from water splitting over CaTaO2N via engineering the surface of a platinum cocatalyst

X. Liu, T. Pei, L. Yan, X. Lei, T. Zheng, X. Ha and H. Xu, New J. Chem., 2024, 48, 14298 DOI: 10.1039/D4NJ03029J

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