Nanoprobe Laboratory for Bio- & Nanotechnology and Biomimetics, The Ohio State University, 201 West 19th Avenue, Columbus, Ohio 43210-1142, USA.
Langmuir. 2010 Jun 1;26(11):8207-17. doi: 10.1021/la904585j.
Certain rose petals are known to be superhydrophobic with high adhesion. There also exist rose petals which are superhydrophobic with low adhesion similar to lotus leaf. The purpose of this study is to characterize systematically the superhydrophobic rose petal with high and low adhesion surfaces and understand the mechanism for adhesion characteristics. Based on these, artificial superhydrophobic surfaces with high and low adhesion are fabricated using a two-step molding process and wax evaporation method. It is shown that the pitch values of microstructures and density of nanostructures play an important role in real rose petals and artificial surfaces to control their adhesion properties.
某些玫瑰花瓣具有超疏水和高附着力的特性。也存在一些玫瑰花瓣具有超疏水和低附着力的特性,类似于荷叶。本研究的目的是系统地表征具有高和低附着力的超疏水玫瑰花瓣,并了解其附着特性的机理。在此基础上,采用两步模压法和蜡蒸发法制备了具有高、低附着力的人工超疏水表面。结果表明,微结构的间距值和纳米结构的密度对真实玫瑰花瓣和人工表面控制其附着性能起着重要作用。