80电影天堂网,少妇高潮一区二区三区99,jαpαnesehd熟女熟妇伦,无码人妻精品一区二区蜜桃网站

Links
Contact Info.
  • Address:北京市昌平區(qū)高教園南三街9號(hào)北京航空航天大學(xué)實(shí)驗(yàn)七號(hào)樓409
  • Zip:102206
  • Tel:---
  • Fax:
  • Email:zhengym@buaa.edu.cn
Current Location :> Home > Publications > Text
Fog Collection on a Bio-inspired Topological Alloy Net with Micro-/ Nanostructures
writer:Xin Li, Yufang Liu, Hu Zhou, Chunlei Gao, Diansen Li,* Yongping Hou,* and Yongmei Zheng*
keywords:fog collection
source:期刊
specific source:ACS Appl. Mater. Interfaces 2020, 12, 5065?5072
Issue time:2020年


Because of the scarcity of freshwater resources, fog collection as one of the effective methods to solve this issue has attracted widespread concern. Inspired by several natural creatures with the capability to collect water from fog, the bio-inspired water-harvesting materials have aroused considerable attention and been widely developed. Inspired by the directional water droplets transportation to the apex on both shorebirds beaks and wheat awns, the bio-inspired topological alloy net with a V-shaped asymmetric geometry in its mesh was designed for fog collecting. Then, micro-/nano-hierarchical structures were modified on the surface of the netting wire via the cathodic electrodeposition method. Thus, the bio-inspired topological alloy net with micro/nanostructures was fabricated successfully. Through the integration of topological geometry and surface microstructure, not only the water-collection rate is improved by efficient drainage along the designated pathways, but also the issue of mesh clogging is resolved. In addition, a theoretical model was constructed to reveal the mechanism, especially the resultant force arising from the V-shaped structure. This work provides insight into the development of novel fog-collecting materials, which has potential applications in other fifields, such as liquid transportation, microfluidics, and interface science.