纳米棒
材料科学
膜
化学工程
原子层沉积
热液循环
纳米纤维
甲醛
沉积(地质)
图层(电子)
纳米技术
化学
有机化学
生物化学
工程类
古生物学
沉积物
生物
作者
Shasha Feng,Dongyan Li,Ze‐Xian Low,Zhongyun Liu,Zhaoxiang Zhong,Yunxia Hu,Yong Wang,Weihong Xing
标识
DOI:10.1016/j.memsci.2017.02.042
摘要
It has been well recognized that there are a number of indoor contaminants including particulate matter, gaseous pollutants and microbials. The removal of indoor contaminants often requires multiple layers of various air filters. Herein, we report on a multifunctional air purifying filter produced by the hydrothermal growth of ZnO nanorod-wrapped PTFE nanofibers, constructed of nanostructured Ag deposited on the ZnO nanorods with a hierarchical structure for gas contaminant removal. Atomic layer deposition (ALD) was used to seed a layer of ZnO nanoseeds onto the PTFE fibrils which were then subjected to a hydrothermal reaction to form ZnO nanorods. Ag nanoparticels were subsequently assembled on the surface of the ZnO nanorods via a silver electroless deposition reaction. The resulting composite membrane exhibited an excellent dynamic antibacterial property of ~100% and a formaldehyde degradation rate of 60%. Compared with the pristine membrane, the gas permeation of the composite membrane increased from 227.26 m3 m−2 h−1 kPa−1 to 275.36 m3 m−2 h−1 kPa−1. The successful fabrication of this composite membrane with remarkable antibacterial and excellent formaldehyde degradation performance may provide a new route for the preparation of indoor air purification filters.
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