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用于增强光催化杀菌活性的原子级锌氮位点调控的供体-受体催化剂

Atomic Zn-N Site-Regulated Donor-Acceptor Catalyst for Boosting Photocatalytic Bactericidal Activity.

作者信息

Rao Shaosheng, Lu Ziwen, Xie Juan, Li Zhihuan, Liu Hanqing, Yu Xin, Liu Qinqin, Yang Juan

机构信息

Department of Materials Science and Engineering, Jiangsu University, Zhenjiang, Jiangsu 212013, China.

Department of Life Sciences, Jiangsu University, Zhenjiang, Jiangsu 212013, China.

出版信息

Nano Lett. 2024 Dec 11;24(49):15598-15606. doi: 10.1021/acs.nanolett.4c03853. Epub 2024 Nov 27.

Abstract

Reactive oxygen species (ROS)-mediated photocatalytic antibacterial materials are emerging as promising alternatives for the antibiotic-free therapy of drug-resistant bacterial infections. However, the overall efficiency of photocatalytic sterilization is restricted by the rapid recombination of the charge carriers. Herein, we design an in-plane π-conjugated donor-acceptor (D-A) system (g-CN-Zn-NC), comprising graphitic carbon nitride (g-CN) as the donor and Zn single-atom anchored nitrogen-doped carbon (Zn-NC) as the acceptor. Experimental and theoretical results reveal that the introduction of Zn-NC induces the formation of an intermediate band in g-CN-Zn-NC, extending the spectral absorption range and facilitating charge carrier transfer and separation. Additionally, the synergistic effects of the dual sites, the N═C-N sites of the g-CN "donor" and the atomic Zn-N sites of the Zn-NC "acceptor", boost ROS production. Consequently, the biocompatible g-CN-Zn-NC effectively kills methicillin-resistant (MRSA) under visible-light irradiation and promotes the healing of MRSA-infected wounds on mouse skin.

摘要

活性氧(ROS)介导的光催化抗菌材料正成为无抗生素治疗耐药细菌感染的有前途的替代方案。然而,光催化杀菌的整体效率受到电荷载流子快速复合的限制。在此,我们设计了一种平面内π共轭供体-受体(D-A)体系(g-CN-Zn-NC),它由作为供体的石墨相氮化碳(g-CN)和作为受体的锌单原子锚定的氮掺杂碳(Zn-NC)组成。实验和理论结果表明,Zn-NC的引入诱导了g-CN-Zn-NC中中间带的形成,扩展了光谱吸收范围,并促进了电荷载流子的转移和分离。此外,g-CN“供体”的N═C-N位点和Zn-NC“受体”的原子Zn-N位点这两个位点的协同效应提高了ROS的产生。因此,具有生物相容性的g-CN-Zn-NC在可见光照射下能有效杀死耐甲氧西林金黄色葡萄球菌(MRSA),并促进小鼠皮肤上MRSA感染伤口的愈合。

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