Chen Qingyan, Zhao Kai, Li Guoping, Luo Jiyue, Li Xin, Zeng Yingjie, Wang Xiao-Mao
Shenzhen Angel Drinking Water Industrial Group Corporation, Angel Industrial Park, Baoan District, Shenzhen, Guangdong 518108, China.
State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing 100084, China.
ACS Appl Mater Interfaces. 2022 Sep 28;14(38):43741-43748. doi: 10.1021/acsami.2c11551. Epub 2022 Sep 13.
Given the increasing usage of drinking water purifiers, highly permeable membranes with strong antimicrobial functions are desperately desirable for effective and durable water disinfection. Hereby, we prepared such antimicrobial membranes by chemical grafting of quaternary ammonium salt (QAS) molecules, 3-(trimethoxysilyl)propyldimethyloctadecyl ammonium chloride (TPMMC), onto air plasma pretreated biodegradable polylactic acid (PLA) substrates. The high chemical grafting density promoted very strong and positive zeta potential charge of the resulted PLA-QAS membrane, contributing to effective and broad-spectrum antimicrobial efficiencies (>99.99%) against different microbes, including fungi and conventional and drug-resistant bacteria. The solid grafting of QAS molecules produced a durable antimicrobial performance of the PLA-QAS membrane. In addition, the pleated filter (0.45 m) of PLA-QAS membrane showed outstanding bacteria rejection properties (>99.99%) and excellent washing durability (up to 20 m water) even at very high water filtration rates (up to 4 L/min). The disinfection mechanism was clarified that negatively charged bacteria could be rapidly adsorbed to positively charged PLA-QAS spinnings, followed by devastating cell membrane damage to bacterial debris, leaving a clean environment without significant biofilm and biofouling formation.
鉴于饮用水净化器的使用日益增加,迫切需要具有强大抗菌功能的高渗透性膜来实现有效且持久的水消毒。在此,我们通过将季铵盐(QAS)分子3-(三甲氧基甲硅烷基)丙基二甲基十八烷基氯化铵(TPMMC)化学接枝到空气等离子体预处理的可生物降解聚乳酸(PLA)基材上,制备了这种抗菌膜。高化学接枝密度促使所得PLA-QAS膜具有非常强的正ζ电位电荷,有助于对包括真菌、传统细菌和耐药细菌在内的不同微生物实现高效且广谱的抗菌效率(>99.99%)。QAS分子的牢固接枝赋予了PLA-QAS膜持久的抗菌性能。此外,PLA-QAS膜的褶式过滤器(0.45μm)即使在非常高的水过滤速率(高达4L/min)下也表现出出色的细菌截留性能(>99.99%)和优异的清洗耐久性(高达20m水)。消毒机制得以阐明,即带负电荷的细菌可迅速吸附到带正电荷的PLA-QAS纺丝上,随后对细菌碎片造成毁灭性的细胞膜损伤,从而营造一个无明显生物膜和生物污垢形成的清洁环境。