Liu Wenquan, Sun Yu, Cui Anni, Xia Yifan, Yan Qiuzhu, Song Yongxin, Wang Liangliang, Shan Guiye, Wang Xin
Centre for Advanced Optoelectronic Functional Materials Research and Key Laboratory for UV Light-Emitting Materials and Technology of the Ministry of Education, Northeast Normal University, Changchun 130024, China.
Henan Key Lab for Photovoltaic Materials, Henan University, Kaifeng 475004, China.
Nano Energy. 2023 Jan;105:107987. doi: 10.1016/j.nanoen.2022.107987. Epub 2022 Nov 5.
Since the COVID-19 pandemic outbreaks, the utilization of medical masks plays a critical role in reducing the infected risk. However, constructing multifunctional masks to achieve simultaneously self-sterilization, reusability, and respiratory monitoring capability remains still a huge challenge. Herein, a reusable Ag micro-mesh film-based mask is proposed, which enables the capabilities of electrothermal sterilization and self-powered real-time respiratory monitoring. Highly conductive Ag micro-mesh films prepared by continuous draw spinning method demonstrate excellent electrothermal performances for thermal sterilization and serve as working electrode to fabricate triboelectric nanogenerator (TENG) for real-time respiratory monitoring, respectively. Under a low driving voltage of 3.0 V, the surface temperature of Ag micro-mesh film enables a quick increase to over 60 °C within 30 s, which endows thermal sterilization against with antibacterial efficiency of 95.58 % within 20 min to achieve the self-sterilization of medical masks. Furthermore, a self-powered alarm system based on the fabricated TENG as respiratory monitor is developed for real-time respiratory monitoring to render a timely treatment for patients in danger of tachypnea and apnea. Consequently, this work has paved a new and practical avenue to achieve reusable multifunctional masks with capabilities of electrothermal sterilization and real-time respiratory monitoring in clinical medicine.
自新冠疫情爆发以来,医用口罩的使用在降低感染风险方面发挥着关键作用。然而,构建同时具备自我消毒、可重复使用和呼吸监测功能的多功能口罩仍然是一个巨大的挑战。在此,我们提出了一种基于可重复使用的银微网薄膜的口罩,它具备电热消毒和自供电实时呼吸监测的能力。通过连续拉伸纺丝法制备的高导电性银微网薄膜展现出优异的电热性能,可用于热消毒,并分别作为工作电极来制造摩擦纳米发电机(TENG)以进行实时呼吸监测。在3.0 V的低驱动电压下,银微网薄膜的表面温度能在30秒内迅速升至60°C以上,这赋予了其热消毒能力,能在20分钟内实现95.58%的抗菌效率,从而实现医用口罩的自我消毒。此外,还开发了一种基于所制造的TENG作为呼吸监测器的自供电报警系统,用于实时呼吸监测,以便对有呼吸急促和呼吸暂停危险的患者进行及时治疗。因此,这项工作为在临床医学中实现具有电热消毒和实时呼吸监测功能的可重复使用多功能口罩开辟了一条新的实用途径。