JOURNAL ARTICLE

Protonated Imine-Linked Zirconium-Organic Cages forEnhanced Photocatalytic Hydrogen Peroxide Production

Abstract

Zirconium-based metal–organic cages (Zr-MOCs) have garnered significant interest for their exceptional stability, tunable functionality, processability, and ease of synthesis. Herein, an imine-based zirconium-organic cage (designated ZrC-IM) was precisely synthesized via Schiff-base condensation between presynthesized aldehyde-functionalized zirconium-oxo clusters and p-phenylenediamine (PPD) linkers. To enhance light absorption capacity, protonation of the imine bonds in ZrC-IM was achieved via acetic acid treatment. Consequently, the protonated sample (ZrC-IM-AC) exhibits significant absorption red-shifts and improved charge separation efficiency, further demonstrating superior catalytic activity for H2O2 photogeneration, with a yield rate of 507.1 μmol g–1 h–1. Radical trapping experiments combined with electron spin resonance (ESR) spectroscopy demonstrated that both ZrC-IM and ZrC-IM-AC catalysts promote photocatalytic H2O2 generation through an indirect two-electron oxygen reduction pathway involving the sequential reactions: O2 + eO2, followed by O2 + e + 2H+ → H2O2. This work not only expands the structural diversity of imine-based Zr-MOCs, but also offers new insights for the regulation of MOC-based photocatalysts with enhanced performance.

Keywords:
Protonation Catalysis Photocatalysis Imine Electron paramagnetic resonance Yield (engineering) Hydrogen peroxide Absorption spectroscopy

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Topics

Nanoplatforms for cancer theranostics
Physical Sciences →  Engineering →  Biomedical Engineering
Advanced Photocatalysis Techniques
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Metal-Organic Frameworks: Synthesis and Applications
Physical Sciences →  Chemistry →  Inorganic Chemistry

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