Author: Si, Yang; Zhang, Zheng; Wu, Wanrong; Fu, Qiuxia; Huang, Kang; Nitin, Nitin; Ding, Bin; Sun, Gang
Title: Daylight-driven rechargeable antibacterial and antiviral nanofibrous membranes for bioprotective applications Document date: 2018_3_16
ID: y3scrphl_3
Snippet: Here, we present a robust methodology to create daylight-driven rechargeable antibacterial and antiviral nanofibrous membranes (RNMs) by incorporating daylight-active chemicals that can effectively and efficiently produce reactive oxygen species (ROS). The photoactive RNMs can store the biocidal activity under light irradiation and readily release ROS to provide biocidal functions under dim light or dark conditions. The RNMs exhibit integrated pr.....
Document: Here, we present a robust methodology to create daylight-driven rechargeable antibacterial and antiviral nanofibrous membranes (RNMs) by incorporating daylight-active chemicals that can effectively and efficiently produce reactive oxygen species (ROS). The photoactive RNMs can store the biocidal activity under light irradiation and readily release ROS to provide biocidal functions under dim light or dark conditions. The RNMs exhibit integrated properties of fast ROS production, ease of activity storing, long-term durability, high biocidal efficacy, robust breathability, and interception of fine particles. The incorporation of RNMs as a biocidal surface protective layer on protective equipment was demonstrated to achieve promising contact killing against pathogens either in aerosol or in liquid forms.
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