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首页> 外文期刊>Nano Energy >Self-powered active antibacterial clothing through hybrid effects of nanowire-enhanced electric field electroporation and controllable hydrogen peroxide generation
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Self-powered active antibacterial clothing through hybrid effects of nanowire-enhanced electric field electroporation and controllable hydrogen peroxide generation

机译:通过纳米线增强电场电磁场电穿孔和可控过氧化氢产生的混合效应自动活性抗菌服装

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Pathogenic bacteria that give rise to infection have posed major health concerns over the past several decades. In this paper, we propose a self-powered active disinfection system controlled by human motions. The system is mainly composed of a multilayered triboelectric nanogenerator (m-TENG) for the harvesting of biomechanical energy and conductive fabrics as electrodes for the wearable disinfection system. The working principle of the system is based on hybrid effects of H2O2 production and electroporation, which provide good disinfection performance toward gram-negative Escherichia coli (E. coli) and gram-positive Staphylococcus aureus (S. aureus). In addition, we also demonstrate that the presence of gold-coated tellurium nanowires (Au-Te NWs) on the fabrics increased the strength of local electric field and enhanced the system's disinfection performance. With the help of Au-Te NWs, the disinfection activities of the system reach values of more than 87% and 96% against S. aureus and E. coli, respectively, when the m-TENG was operated at a frequency of 1 Hz for 60 min. Furthermore, the disinfection activity can be strengthened by increasing the operation frequency or electric output of the m-TENG. Alternatively, the generated electricity can be stored in a capacitor to achieve rapid disinfection via an instantaneous discharging process. Because of the fiber-based structure in the disinfection device and the shoe-embedded design of the m-TENG, our proposed self-powered active disinfection system can be easily integrated into commercial textiles to fabricate smart clothes to combat pathogenic bacteria.
机译:在过去的几十年中引起感染引起感染的病原细菌会提出了重大的健康问题。在本文中,我们提出了由人类运动控制的自我发电的活性消毒系统。该系统主要由多层摩擦纳米料(M-Teng)组成,用于收获生物力学能量和导电织物作为可穿戴消毒系统的电极。该系统的工作原理基于H2O2生产和电穿孔的杂化效应,这为革兰氏阴性大肠杆菌(大肠杆菌)和革兰氏阳性葡萄球菌(Aureus)提供了良好的消毒性能。此外,我们还证明,在织物上存在镀金的碲纳米线(Au-Te NWS)增加了局部电场的强度,并提高了系统的消毒性能。在Au-Te NWS的帮助下,当M-Teng以1 Hz的频率运行时,系统的消毒活动分别达到87%和96%的针对金黄色葡萄球菌和大肠杆菌的价值60分钟。此外,通过增加M-Teng的操作频率或电输出,可以加强消毒活性。或者,产生的电力可以存储在电容器中以通过瞬时排出过程实现快速消毒。由于基于纤维的结构在消毒装置和鞋底设计的M-Teng,我们提出的自动活性消毒系统可以很容易地集成到商业纺织品中,以制造智能衣服以对抗致病性细菌。

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