Xiong Si-Wei, Zou Qian, Wang Ze-Gang, Qin Jun, Liu Yang, Wei Nan-Jun, Jiang Meng-Ying, Gai Jing-Gang
State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute of Sichuan University, Chengdu, Sichuan 610065, China.
Shandong Chen-Zhong Machinery Co., Ltd, Zibo, Shandong 256400, China.
Chem Eng J. 2022 Mar 15;432:134160. doi: 10.1016/j.cej.2021.134160. Epub 2021 Dec 15.
Wearing surgical masks remains the most effective protective measure against COVID-19 before mass vaccination, but insufficient comfortability and low antibacterial/antiviral activities accelerate the replacement frequency of surgical masks, resulting in large amounts of medical waste. To solve this problem, we report new nanofiber membrane masks with outstanding comfortability and anti-pathogen functionality prepared using fluorinated carbon nanofibers/carbon fiber (F-CNFs/CF). This was used to replace commercial polypropylene (PP) nonwovens as the core layer of face masks. The through-plane and in-plane thermal conductivity of commercial PP nonwovens were only 0.12 and 0.20 W/m K, but the F-CNFs/CF nanofiber membranes reached 0.62 and 5.23 W/m K, which represent enhancements of 380% and 2523%, respectively. The surface temperature of the PP surgical masks was 23.9 ℃ when the wearing time was 15 min, while the F-CNFs/CF nanocomposite fibrous masks reached 27.3 ℃, displaying stronger heat dissipation. Moreover, the F-CNFs/CF nanofiber membranes displayed excellent electrical conductivity and produced a high-temperature layer that killed viruses and bacteria in the masks. The surface temperature of the F-CNFs/CF nanocomposite fibrous masks reached 69.2 ℃ after being connected to a portable power source for 60 s. Their antibacterial rates were 97.9% and 98.6% against and , respectively, after being connected to a portable power source for 30 min.
在大规模接种疫苗之前,佩戴外科口罩仍然是预防新冠病毒最有效的防护措施,但舒适性不足以及抗菌/抗病毒活性较低加速了外科口罩的更换频率,导致产生大量医疗废物。为了解决这一问题,我们报道了一种新型纳米纤维膜口罩,它采用氟化碳纳米纤维/碳纤维(F-CNFs/CF)制备,具有出色的舒适性和抗病原体功能。该材料被用于替代商用聚丙烯(PP)无纺布作为口罩的核心层。商用PP无纺布的面内和面外热导率分别仅为0.12和0.20W/m·K,但F-CNFs/CF纳米纤维膜分别达到了0.62和5.23W/m·K,分别提高了380%和2523%。佩戴15分钟时,PP外科口罩的表面温度为23.9℃,而F-CNFs/CF纳米复合纤维口罩达到了27.3℃,散热性更强。此外,F-CNFs/CF纳米纤维膜具有优异的导电性,并产生了一个高温层,可杀死口罩内的病毒和细菌。连接便携式电源60秒后,F-CNFs/CF纳米复合纤维口罩的表面温度达到69.2℃。连接便携式电源30分钟后,它们对大肠杆菌和金黄色葡萄球菌的抗菌率分别为97.9%和98.6%。