Issue 23, 2024

Engineering a pyrene MOF composite photocatalyst toward the formation of carbon dioxide radical anions through regulating the charge transfer from type II to Z scheme via a chemical bond-modulated strategy

Abstract

The CO2 radical anion (˙CO2) is a powerful single electron reductant and an important intermediate in CO2 involved reactions. Herein, we report an approach to engineer a pyrene MOF composite photocatalyst toward the formation of ˙CO2 through regulating the charge transfer from type II to Z scheme via a chemical bond-modulated strategy. Through a post-synthetic modification, cysteamine (Cys) was rationally anchored onto the unsaturated Cd clusters of a pyrene-based MOF (namely WYU-11) via chemical bonds, giving rise to a modified MOF of WYU-11-Cys. This modification induced the growth of CdS nanoparticles (NPs) on the surfaces of WYU-11-Cys via the chemical bonds between CdS and Cys, resulting in the formation of a MOF composite of CdS@WYU-11-Cys. The introduction of Cys could regulate the charge transfer between CdS and WYU-11, leading to the conversion from type II to Z scheme with a high redox potential of −1.93 V vs. a normal hydrogen electrode. CdS@WYU-11-Cys could reduce CO2 to ˙CO2, which was confirmed by an electron paramagnetic resonance (EPR) experiment, and promote the photocatalytic cyclization of CO2 and propargylic amines. This work provides useful inspirations for the rational design of Z-scheme MOF composites for CO2 conversion.

Graphical abstract: Engineering a pyrene MOF composite photocatalyst toward the formation of carbon dioxide radical anions through regulating the charge transfer from type II to Z scheme via a chemical bond-modulated strategy

Supplementary files

Article information

Article type
Research Article
Submitted
14 Aug 2024
Accepted
20 Oct 2024
First published
22 Oct 2024

Inorg. Chem. Front., 2024,11, 8489-8501

Engineering a pyrene MOF composite photocatalyst toward the formation of carbon dioxide radical anions through regulating the charge transfer from type II to Z scheme via a chemical bond-modulated strategy

X. Zhao, Y. Zhao, Y. Li, P. Lyu, C. Chen, Z. Mo, C. Peng, J. Liu and L. Zhang, Inorg. Chem. Front., 2024, 11, 8489 DOI: 10.1039/D4QI02072C

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