Chinese Knot Inspired Ag Nanowire Membrane for Robust Separation in Water Remediation
Song, Weijie; Sakil, Habib; Fang, Qile; Meng, Qing'an; Zhong, Yun; Lin, Haibo; Liu, Fu; Li, Tiantian; Xiong, Zhu
刊名ADVANCED MATERIALS INTERFACES
2018
卷号5期号:11
关键词Pvdf Membrane Silver Nanoparticles Oil/water Separation Performance Surface Ultrafiltration Layer Reduction Films Permeability
英文摘要Chinese knot is a "traditional handicraft art" in Chinese culture, which is expected to ward off evil spirits and pray for good luck. It is constructed by weaving cords and tying different types of knots firmly. Inspired by Chinese knot, a robust 1D Ag nanowire membrane with nanoscale knots is fabricated to achieve robust catalytic/anti-bacterial separation. Silver mirror reaction is manipulated to anchor Ag nanowires on a hierarchical polyvinylidene fluoride membrane substrate. The robust Ag nanowire membrane withstands the vigorous cross-flow hydraulic shear (3000 mL min(-1)) for 24 h at 0.1 MPa without any physicochemical deterioration. The Chinese knot inspired membrane exhibits extraordinary robustness in continuous catalysis, kill-release anti-bacteria, oil-in-water emulsion, and ultrafiltration separation. This work paves a new way for constructing a robust 1D inorganic nanowire membrane for water remediation applications.
学科主题Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
语种英语
公开日期2018-12-04
内容类型期刊论文
源URL[http://ir.nimte.ac.cn/handle/174433/17408]  
专题2018专题
推荐引用方式
GB/T 7714
Song, Weijie,Sakil, Habib,Fang, Qile,et al. Chinese Knot Inspired Ag Nanowire Membrane for Robust Separation in Water Remediation[J]. ADVANCED MATERIALS INTERFACES,2018,5(11).
APA Song, Weijie.,Sakil, Habib.,Fang, Qile.,Meng, Qing'an.,Zhong, Yun.,...&Xiong, Zhu.(2018).Chinese Knot Inspired Ag Nanowire Membrane for Robust Separation in Water Remediation.ADVANCED MATERIALS INTERFACES,5(11).
MLA Song, Weijie,et al."Chinese Knot Inspired Ag Nanowire Membrane for Robust Separation in Water Remediation".ADVANCED MATERIALS INTERFACES 5.11(2018).
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