Nanocavity Confining Platinum Nanoclusters Enhances Photocatalytic Two‐Electron Oxygen Reduction for Wound Healing

ABSTRACT Photocatalytic two‐electron oxygen reduction reaction (ORR) toward H 2 O 2 synthesis is a compelling approach for clinical antibacterial applications. Yet its selectivity is hampered by the competing four‐electron ORR, which compromises both H 2 O 2 generation kinetics and antibacterial efficiency. Herein, we report a new nanoscale confinement strategy for the controllable synthesis of covalent organic frameworks (COFs) confining isolated platinum nanoclusters (NCs) to enhance Pauling‐type of O 2 adsorption to achieve two‐electron oxygen reduction for efficient antibacterial therapy. The resulting Tfp‐Db COFs@Pt NCs exhibits a significantly higher H 2 O 2 formation kinetics (3.12 × 10− 3 mol L −1 h −1 ) than Tfp‐Db COFs@Pt nanoparticles (1.55 × 10 −3 mol L −1 h −1 ), with 2e − ORR selectivity increased from 45.0% to 86.0%. Experimental and theoretical results reveal a two‐step single electron oxygen reduction pathway for H 2 O 2 photosynthesis over Tfp‐Db COFs@Pt NCs. The Tfp‐Db COFs@Pt NCs exhibits excellent sterilization efficiencies of 5.0 log 10 CFU mL −1 and 5.2 log 10 CFU mL −1 against S. aureus and E. coli , respectively, exceeding most reported materials. Furthermore, Tfp‐Db COFs@Pt NCs facilitate the regeneration of infectious wounds, with the efficiency of nearly 100% on day 10, outperforming previously reported bionanomaterials. Collectively, this work presents a new strategy for regulating the Pauling‐type of O 2 adsorption to enhance the photocatalytic H 2 O 2 formation for wound healing application.

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Publication Details

Journal
Advanced Materials
Published
2026-10-09
DOI
https://doi.org/10.1002/adma.75228
Primary Topic
Advanced Photocatalysis Techniques
Type
article
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article

Nanocavity Confining Platinum Nanoclusters Enhances Photocatalytic Two‐Electron Oxygen Reduction for Wound Healing

Youxing Liu, Xuliang Deng, Fangyong Liu, Yachao Xu et al.
Advanced Materials
Advanced Photocatalysis Techniques
article

Nanocavity Confining Platinum Nanoclusters Enhances Photocatalytic Two‐Electron Oxygen Reduction for Wound Healing

Youxing Liu, Xuliang Deng, Fangyong Liu, Yachao Xu, Xiaohua Guo, Qinqin Li, Yaru Guo, Shaojun Guo, Yixuan Lu, Shihan Zhang
article en

Abstract

ABSTRACT Photocatalytic two‐electron oxygen reduction reaction (ORR) toward H 2 O 2 synthesis is a compelling approach for clinical antibacterial applications. Yet its selectivity is hampered by the competing four‐electron ORR, which compromises both H 2 O 2 generation kinetics and antibacterial efficiency. Herein, we report a new nanoscale confinement strategy for the controllable synthesis of covalent organic frameworks (COFs) confining isolated platinum nanoclusters (NCs) to enhance Pauling‐type of O 2 adsorption to achieve two‐electron oxygen reduction for efficient antibacterial therapy. The resulting Tfp‐Db COFs@Pt NCs exhibits a significantly higher H 2 O 2 formation kinetics (3.12 × 10− 3 mol L −1 h −1 ) than Tfp‐Db COFs@Pt nanoparticles (1.55 × 10 −3 mol L −1 h −1 ), with 2e − ORR selectivity increased from 45.0% to 86.0%. Experimental and theoretical results reveal a two‐step single electron oxygen reduction pathway for H 2 O 2 photosynthesis over Tfp‐Db COFs@Pt NCs. The Tfp‐Db COFs@Pt NCs exhibits excellent sterilization efficiencies of 5.0 log 10 CFU mL −1 and 5.2 log 10 CFU mL −1 against S. aureus and E. coli , respectively, exceeding most reported materials. Furthermore, Tfp‐Db COFs@Pt NCs facilitate the regeneration of infectious wounds, with the efficiency of nearly 100% on day 10, outperforming previously reported bionanomaterials. Collectively, this work presents a new strategy for regulating the Pauling‐type of O 2 adsorption to enhance the photocatalytic H 2 O 2 formation for wound healing application.

Advanced Materials
King University (US), Peking University (CN), Beijing University of Chemical Technology (CN)
Openalex Percentile: Top 33%
Advanced Photocatalysis Techniques
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