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具有增强的局域表面等离子体共振效应用于近红外光子细菌消毒的超薄二维BiOCl-Bi₂S₃-Cu₂S三元异质结构

Ultrathin Two-Dimensional BiOCl-Bi S -Cu S Ternary Heterostructures with Enhanced LSPR effect for NIR Photonic Bacterial Disinfection.

作者信息

Yang Shouning, Wang Shengkun, Wang Yaru, Song Jian, Jiang Yuqin, Chen Liang, Yang Huayan

机构信息

NMPA Key Laboratory for Research and Evaluation of Innovative Drug, Henan Key Laboratory of Organic Functional Molecule and Drug Innovation, Collaborative Innovation Center of Henan Province for Green Manufacturing of Fine Chemicals School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan, 453007, P. R. China.

School of Physics, Henan Normal University, Xinxiang, Henan, 453007, P. R. China.

出版信息

Chemistry. 2023 Apr 3;29(19):e202203831. doi: 10.1002/chem.202203831. Epub 2023 Feb 28.

Abstract

Photonic disinfection, particularly near-infrared (NIR) light triggered antibacterial, has emerged as a highly promising solution for combating pathogenic microbes due to its spatiotemporal operability, safety, and low cost of apparatus. However, it remains challenging to construct NIR-responsive antibacterial agents with high light-converting efficacy and elucidate synergistic mechanisms. In this work, ultrathin two-dimensional (2D) BiOCl-Bi S -Cu S ternary heterostructures that can efficiently kill drug-resistant bacteria were synthesized by doping 0D Bi S and Cu S nanoparticles in the 2D BiOCl nanosheets via a facile one-pot hydrothermal method. Notably, the incorporation of Cu S nanoparticles bestows strong NIR light-harvesting capability to the composite nanosheets due to their localized surface plasmon resonance (LSPR). Upon NIR light illumination, the BiOCl-Bi S -Cu S nanosheets can achieve enhanced photonic hyperthermia and reaction oxygen species (ROS) generation, serving as single light-activated bi-functional photothermal/photodynamic therapeutics. High-speed hot electrons and large local electronic fields caused by LSPR might play an important role in thermal vibrations and effective carrier separations, respectively. Benefiting from the unique ternary heterostructures, both the photothermal conversion and ROS generation efficacy of BiOCl-Bi S -Cu S nanosheets are significantly improved compared to the binary BiOCl-Cu S or BiOCl-Bi S nanosheets. Accordingly, the ternary composite nanosheets can effectively kill bacteria via the NIR-driven photonic disinfection mechanism. This work presents a new type of 2D composite nanosheets with ternary heterostructures for NIR photonic disinfection.

摘要

光子消毒,特别是近红外(NIR)光触发的抗菌作用,由于其时空可操作性、安全性和设备成本低,已成为对抗致病微生物的极有前景的解决方案。然而,构建具有高光转换效率的近红外响应抗菌剂并阐明其协同机制仍然具有挑战性。在这项工作中,通过简便的一锅水热法在二维BiOCl纳米片中掺杂0D Bi₂S₃和Cu₂S纳米颗粒,合成了能够有效杀死耐药细菌的超薄二维(2D)BiOCl-Bi₂S₃-Cu₂S三元异质结构。值得注意的是,由于Cu₂S纳米颗粒的局域表面等离子体共振(LSPR),其掺入赋予复合纳米片强大的近红外光捕获能力。在近红外光照射下,BiOCl-Bi₂S₃-Cu₂S纳米片可以实现增强的光子热疗和活性氧(ROS)生成,作为单一光激活的双功能光热/光动力疗法。由LSPR引起的高速热电子和大的局部电场可能分别在热振动和有效载流子分离中起重要作用。受益于独特的三元异质结构,与二元BiOCl-Cu₂S或BiOCl-Bi₂S₃纳米片相比,BiOCl-Bi₂S₃-Cu₂S纳米片的光热转换和ROS生成效率都得到了显著提高。因此,三元复合纳米片可以通过近红外驱动的光子消毒机制有效地杀死细菌。这项工作提出了一种新型的具有三元异质结构的二维复合纳米片用于近红外光子消毒。

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