Zhao Ning, Zhang Xiaoyan, Zhang Xiaoli, Xu Jian
State Key Laboratory of Polymer Physics and Chemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, P. R. China.
Chemphyschem. 2007 May 14;8(7):1108-14. doi: 10.1002/cphc.200700032.
A simple method is described for controlling the surface chemical composition and topography of the diblock copolymer poly(styrene)-b-poly(dimethylsiloxane)(PS-b-PDMS) by casting the copolymer solutions from solvents with different selectivities. The surface morphology and chemical composition were characterized by scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS), respectively, and the wetting behavior was studied by water contact angle (CA) and sliding angle (SA) and by CA hysteresis. Chemical composition and morphology of the surface depend on solvent properties, humidity of the air, solution concentration, and block lengths. If the copolymer is cast from a common solvent, the resultant surface is hydrophobic, with a flat morphology, and dominated by PDMS on the air side. From a PDMS-selective solvent, the surface topography depends on the morphology of the micelles. Starlike micelles give rise to a featureless surface nearly completely covered by PDMS, while crew-cut-like micelles lead to a rough surface with a hierarchical structure that consists partly of PDMS. From a PS-selective solvent, however, surface segregation of PDMS was restricted, and the surface morphology can be controlled by vapor-induced phase separation. On the basis of the tunable surface roughness and PDMS concentration on the air side, water repellency of the copolymer surface could be tailored from hydrophobic to superhydrophobic. In addition, reversible switching behavior between hydrophobic and superhydrophobic can be achieved by exposing the surface to solvents with different selectivities.
本文描述了一种简单的方法,通过从具有不同选择性的溶剂中浇铸二嵌段共聚物聚(苯乙烯)-b-聚(二甲基硅氧烷)(PS-b-PDMS)溶液来控制其表面化学成分和形貌。分别用扫描电子显微镜(SEM)和X射线光电子能谱(XPS)对表面形貌和化学成分进行了表征,并通过水接触角(CA)、滑动角(SA)和CA滞后现象研究了润湿行为。表面的化学成分和形貌取决于溶剂性质、空气湿度、溶液浓度和嵌段长度。如果从普通溶剂中浇铸共聚物,所得表面是疏水的,形貌平坦,在空气侧以PDMS为主。从PDMS选择性溶剂中浇铸,表面形貌取决于胶束的形貌。星状胶束产生几乎完全被PDMS覆盖的无特征表面,而平头状胶束导致具有部分由PDMS组成的分级结构的粗糙表面。然而,从PS选择性溶剂中浇铸时,PDMS的表面偏析受到限制,并且表面形貌可以通过气相诱导相分离来控制。基于空气侧可调的表面粗糙度和PDMS浓度,共聚物表面的疏水性可以从疏水调整为超疏水。此外,通过将表面暴露于具有不同选择性的溶剂中,可以实现疏水和超疏水之间的可逆切换行为。