Bioheterojunction‐Engineered System: A New Mechanism of BP/MoS2 Photothermal‐Photocatalytic Dual‐Power Synergistic Sterilization under NIR

Author:

Zhang Shuyan1,Pan Yueqi2,Chen Yihan3,Yang Zhiwei4,He Dongcai2,Feng Nan5,Wang Weijie1,Li Yunfeng5,Chen Danna2,Chen Xianchun1,Zhang Jing6

Affiliation:

1. Sichuan University College of Polymer Science and Engineering College of Polymer Science & Engineering CHINA

2. Sichuan University College of Materials Science & Engineering College of Materials Science & Engineering CHINA

3. Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai Institute of Ceramics Chinese Academy of Sciences CHINA

4. Sichuan University College of Architecture and Environment College of Architecture & Environment CHINA

5. Sichuan University West China School of Stomatology Department of Oral and Maxillofacial Surgery CHINA

6. Sichuan University College of Architecture & Environment No.24 South Section 1, Yihuan Road 610065 Chengdu CHINA

Abstract

In this research, a high‐efficiency nano‐fungicide with synergistic effect was obtained by combining polycrystalline MoS2 with layered nano‐BP to form heterojunction, which had a new photothermal‐photocatalytic antibacterial mechanism to Gram‐positive bacteria, Gram‐negative and drug‐resistance bacteria under NIR. BP/MoS2 whose lethality of bacteria could reach nearly 100% at 400 μg/L, exhibited the highest photothermal lysis efficiency against E. coli, B. pumilus and A. baumannii. It was found that the heterojunction could be heated up to 51.8 ° C within 5 minutes by photothermal conversion, and it also had an excellent performance of photothermal cycle. High temperature and stability of the material endowed it with an outstanding and long‐lasting bactericidal effect. In addition, a series of in vitro free radical experiments was designed, the existence of ·O2‐ and 1O2 in BP/MoS2‐NIR system was verified. And the Way of ROS production and the mechanism of action were discussed by EPR test. Subsequently, two mechanisms of synergistic antibacterial action were summarized, that is, abundant ROS and high temperature could destroy cell wall damage and lysis of bacteria effectively. This study provides a theoretical basis for the synergistic antibacterial action of NIR photothermal and photocatalysis of BP system.

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Catalysis

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