Polymer Photocatalysts Containing Segregated π‐Conjugation Units with Electron‐Trap Activity for Efficient Natural‐light‐driven Bacterial Inactivation

Author:

Wu Xiaojie1,Hu Bochen1,Li Di1,Chen Biyi1,Huang Yuanyong1,Xie Zhongkai1,Li Longhua1,Shen Nanjun1,Yang Fuchen1,Shi Weidong1ORCID,Chen Ming2,Zhu Yongfa3

Affiliation:

1. School of Chemistry and Chemical Engineering Jiangsu University 301 Xuefu Road Zhenjiang Jiangsu 212013 China

2. Department of Urology Changzheng Hospital 415 Fengyang Road, Huangpu District Shanghai 200003 China

3. Department of Chemistry Tsinghua University Beijing 100084 China

Abstract

AbstractDevelopment of highly efficient and metal‐free photocatalysts for bacterial inactivation under natural light is a major challenge in photocatalytic antibiosis. Herein, we developed an acidizing solvent‐thermal approach for inserting a non‐conjugated ethylenediamine segment into the conjugated planes of 3,4,9,10‐perylene tetracarboxylic anhydride to generate a photocatalyst containing segregated π‐conjugation units (EDA‐PTCDA). Under natural light, EDA‐PTCDA achieved 99.9 % inactivation of Escherichia coli and Staphylococcus aureus (60 and 45 min), which is the highest efficiency among all the natural light antibacterial reports. The difference in the surface potential and excited charge density corroborated the possibility of a built‐in electron‐trap effect of the non‐conjugated segments of EDA‐PTCDA, thus forming a highly active EDA‐PTDA/bacteria interface. In addition, EDA‐PTCDA exhibited negligible toxicity and damage to normal tissue cells. This catalyst provides a new opportunity for photocatalytic antibiosis under natural light conditions.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Medicine

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