Issue 11, 2023

Size-matching encapsulation of a high-nuclearity Ni-containing polyoxometalate into a light-responsive MOF for robust photogeneration of hydrogen

Abstract

The development of robust host–guest composite photocatalysts has been considered as an interesting research direction for efficient photo-driven hydrogen evolution. In this work, an interesting size-matching strategy was adopted to construct the Ni16As4P4@NU-1000 composite by encapsulating a high-nuclearity Ni-containing polyoxometalate, [{Ni4(OH)3AsO4}4(B-a-PW9O34)4]28− (Ni16As4P4), guest into a mesoporous Zr-based MOF (NU-1000) host. Under optimized conditions, the resulting Ni16As4P4@NU-1000 composite photocatalyst shows outstanding long-term photo-driven hydrogen evolution activity, achieving a hydrogen evolution of 1120 mmol g−1 and a TON of 28 600 after 120-hour Xe-lamp irradiation. The photocatalytic activity remains essentially unchanged for at least four successive recycling tests. Mechanistic insights revealed that the excellent and robust photocatalytic activity of the Ni16As4P4@NU-1000 composite could be attributed to the synergistic cooperation of good light-responsive ability of the NU-1000 host, reversible multi-electron-catalytic properties of the structurally intact Ni16As4P4 cluster, and the suitable host–guest size-matching effect.

Graphical abstract: Size-matching encapsulation of a high-nuclearity Ni-containing polyoxometalate into a light-responsive MOF for robust photogeneration of hydrogen

Supplementary files

Article information

Article type
Paper
Submitted
09 Dec 2022
Accepted
07 Feb 2023
First published
07 Feb 2023

J. Mater. Chem. A, 2023,11, 5811-5818

Size-matching encapsulation of a high-nuclearity Ni-containing polyoxometalate into a light-responsive MOF for robust photogeneration of hydrogen

R. Wang, Y. Feng, L. Jiao, Y. Dong, H. Zhou, T. Liu, X. Jing and H. Lv, J. Mater. Chem. A, 2023, 11, 5811 DOI: 10.1039/D2TA09606D

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