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基于纳米线增强局域电场的摩擦起电自供电微生物消毒

Triboelectrification induced self-powered microbial disinfection using nanowire-enhanced localized electric field.

机构信息

School of Advanced Materials Science and Engineering, Sungkyunkwan University (SKKU), Suwon, Republic of Korea.

College of Architecture and Environment, Sichuan University, Chengdu, PR China.

出版信息

Nat Commun. 2021 Jun 17;12(1):3693. doi: 10.1038/s41467-021-24028-5.

Abstract

Air-transmitted pathogens may cause severe epidemics showing huge threats to public health. Microbial inactivation in the air is essential, whereas the feasibility of existing air disinfection technologies meets challenges including only achieving physical separation but no inactivation, obvious pressure drops, and energy intensiveness. Here we report a rapid disinfection method toward air-transmitted bacteria and viruses using the nanowire-enhanced localized electric field to damage the outer structures of microbes. This air disinfection system is driven by a triboelectric nanogenerator that converts mechanical vibration to electricity effectively and achieves self-powered. Assisted by a rational design for the accelerated charging and trapping of microbes, this air disinfection system promotes microbial transport and achieves high performance: >99.99% microbial inactivation within 0.025 s in a fast airflow (2 m/s) while only causing low pressure drops (<24 Pa). This rapid, self-powered air disinfection method may fill the urgent need for air-transmitted microbial inactivation to protect public health.

摘要

空气传播的病原体可能引发严重的传染病,对公众健康构成巨大威胁。空气中微生物的失活至关重要,然而,现有空气消毒技术的可行性面临挑战,包括只能实现物理分离而不能灭活、压降明显和能源密集等问题。在这里,我们报告了一种使用纳米线增强局部电场快速杀灭空气传播细菌和病毒的方法,以破坏微生物的外部结构。该空气消毒系统由摩擦纳米发电机驱动,该发电机可有效将机械振动转化为电能,并实现自供电。通过对微生物加速充电和捕获的合理设计,该空气消毒系统促进微生物传输并实现了高性能:在 2m/s 的快速气流中,0.025s 内微生物灭活率超过 99.99%,而压降仅<24Pa。这种快速、自供电的空气消毒方法可能满足空气传播微生物灭活的迫切需求,以保护公众健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b585/8211783/60b730415452/41467_2021_24028_Fig1_HTML.jpg

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