Lin Shizhe, Wang Shuixiang, Yang Wei, Chen Shuwen, Xu Zisheng, Mo Xiwei, Zhou He, Duan Jiangjiang, Hu Bin, Huang Liang
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, Hubei P.R. China.
ACS Nano. 2021 Mar 23;15(3):5486-5494. doi: 10.1021/acsnano.1c00238. Epub 2021 Feb 24.
Recently, wearable and breathable healthcare devices for air filtering and real-time vital signs monitoring have become urgently needed since virus and particulate matter (PM) cause serious health issues. Herein, we present a trap-induced dense monocharged hybrid perfluorinated electret nanofibrous membrane (HPFM) for highly efficient ultrafine PM removal with an efficiency of 99.712% under low pressure drop (38.1 Pa) and high quality factor of 0.154 Pa. Furthermore, a recyclable multifunctional healthcare mask is constructed by integrating the HPFM-based nanogenerator, which realizes efficient PM filtering and wireless real-time human respiration monitoring simultaneously. More importantly, the performance of this mask is still relatively stable even at 100%RH humidity and 92 °C temperature conditions for 48 h, which infers that it can be reused after disinfection. The strategy of fabricating HPFM provides an approach to obtain charge-rich stable electret materials, and the design of multifunctional masks demonstrates their potential application for future personal protection and health monitoring devices.
近年来,由于病毒和颗粒物(PM)会引发严重的健康问题,用于空气过滤和实时生命体征监测的可穿戴透气医疗设备变得迫切需要。在此,我们展示了一种陷阱诱导的致密单电荷混合全氟驻极体纳米纤维膜(HPFM),用于高效去除超细颗粒物,在低压降(38.1 Pa)下效率为99.712%,品质因数为0.154 Pa。此外,通过集成基于HPFM的纳米发电机构建了一种可回收的多功能医疗口罩,它能同时实现高效的PM过滤和无线实时人体呼吸监测。更重要的是,即使在100%RH湿度和92°C温度条件下放置48小时,这种口罩的性能仍然相对稳定,这意味着它在消毒后可以重复使用。制备HPFM的策略提供了一种获得富含电荷的稳定驻极体材料的方法,多功能口罩的设计展示了它们在未来个人防护和健康监测设备中的潜在应用。