| Literature DB >> 28719031 |
Zhenwei Yu1, Frank F Yun1, Yanqin Wang2, Li Yao2,3, Shixue Dou1, Kesong Liu4, Lei Jiang4,5, Xiaolin Wang1.
Abstract
With the impacts of climate change and impending crisis of clean drinking water, designing functional materials for water harvesting from fog with large water capacity has received much attention in recent years. Nature has evolved different strategies for surviving dry, arid, and xeric conditions. Nature is a school for human beings. In this contribution, inspired by the Stenocara beetle, superhydrophilic/superhydrophobic patterned surfaces are fabricated on the silica poly(dimethylsiloxane) (PDMS)-coated superhydrophobic surfaces using a pulsed laser deposition approach with masks. The resultant samples with patterned wettability demonstrate water-harvesting efficiency in comparison with the silica PDMS-coated superhydrophobic surface and the Pt nanoparticles-coated superhydrophilic surface. The maximum water-harvesting efficiency can reach about 5.3 g cm-2 h-1 . Both the size and the percentage of the Pt-coated superhydrophilic square regions on the patterned surface affect the condensation and coalescence of the water droplet, as well as the final water-harvesting efficiency. The present water-harvesting strategy should provide an avenue to alleviate the water crisis facing mankind in certain arid regions of the world.Entities:
Keywords: bioinspired; fog collection; superhydrophilic; superhydrophobic; wettability
Year: 2017 PMID: 28719031 DOI: 10.1002/smll.201701403
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281