作者
Xianming Dai, Fanghao Yang, Ronggui Yang, Xinyu Huang, William A Rigdon, Xiaodong Li, Chen Li
发表日期
2014/11/10
期刊
Applied Physics Letters
卷号
105
期号
19
出版商
AIP Publishing
简介
Simultaneously achieving drag reduction and capillary evaporation enhancement is highly desired but challenging because of the trade-off between two distinct hydrophobic and hydrophilic wettabilities. Here, we report a strategy to synthesize nanoscale biphilic surfaces to endow exceptional drag reduction through creating a unique slip boundary condition and fast capillary wetting by inducing nanoscopic hydrophilic areas. The biphilic nanoporous surfaces are synthesized by decorating hydrophilic functional groups on hydrophobic pristine multiwalled carbon nanotubes. We demonstrate that the carbon nanotube-enabled biphilic nanoporous surfaces lead to a 63.1% reduction of the friction coefficient, a 61.7% wetting speed improvement, and up to 158.6% enhancement of capillary evaporation heat transfer coefficient. A peak evaporation heat transfer coefficient of 21.2 W/(cm 2· K) is achieved on the biphilic …
引用总数
201620172018201920202021202220232024354359435
学术搜索中的文章