Fiber and Polymer Science, University of California, Davis, Davis, CA 95616, USA.
Key Laboratory of Textile Science and Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai 201620, China.
Sci Adv. 2018 Mar 16;4(3):eaar5931. doi: 10.1126/sciadv.aar5931. eCollection 2018 Mar.
Emerging infectious diseases (EIDs) are a significant burden on global economies and public health. Most present personal protective equipment used to prevent EID transmission and infections is typically devoid of antimicrobial activity. We report on green bioprotective nanofibrous membranes (RNMs) with rechargeable antibacterial and antiviral activities that can effectively produce biocidal reactive oxygen species (ROS) solely driven by the daylight. The premise of the design is that the photoactive RNMs can store the biocidal activity under light irradiation and readily release ROS under dim light or dark conditions, making the biocidal function "always online." The resulting RNMs exhibit integrated properties of fast ROS production, ease of activity storing, long-term durability, robust breathability, interception of fine particles (>99%), and high bactericidal (>99.9999%) and virucidal (>99.999%) efficacy, which enabled to serve as a scalable biocidal layer for protective equipment by providing contact killing against pathogens either in aerosol or in liquid forms. The successful synthesis of these fascinating materials may provide new insights into the development of protection materials in a sustainable, self-recharging, and structurally adaptive form.
新发传染病(EID)对全球经济和公共卫生造成了重大负担。目前用于预防 EID 传播和感染的大多数个人防护设备通常缺乏抗菌活性。我们报告了具有可充电抗菌和抗病毒活性的绿色生物防护纳米纤维膜(RNMs),仅由日光驱动即可有效产生杀菌活性氧(ROS)。该设计的前提是光活性 RNMs 可以在光照下储存杀菌活性,并且在弱光或黑暗条件下很容易释放 ROS,从而使杀菌功能“始终在线”。所得到的 RNMs 具有快速产生 ROS、易于储存活性、长期耐用、透气性强、拦截细颗粒(>99%)以及高效杀菌(>99.9999%)和杀病毒(>99.999%)的综合性能,可作为一种可扩展的杀菌层,通过对气溶胶或液体形式的病原体进行接触杀灭,为防护设备提供保护。这些引人注目的材料的成功合成可能为以可持续、自充电和结构自适应的形式开发防护材料提供新的见解。