Tan Shuaixia, Xie Qiongdan, Lu Xiaoying, Zhao Ning, Zhang Xiaoli, Xu Jian
State Key Laboratory of Polymer Physics and Chemistry, Joint Laboratory of Polymer Science and Materials, Institute of Chemistry Chinese Academy of Sciences, Beijing 100080, PR China.
J Colloid Interface Sci. 2008 Jun 1;322(1):1-5. doi: 10.1016/j.jcis.2008.02.066. Epub 2008 Mar 7.
Brassica oleracea-like polymer surface is facilely fabricated by one-step casting process using amorphous polystyrene (PS) under ambient atmosphere. The obtained coatings show excellent superhydrophobicity and only possess unitary micro-scale structure, similar to the natural brassica leaf. In addition, a simple topography analysis also roughly verifies superhydrophobic structure of branched and intermingled sticks and bumps. This process provides a fairly easy procedure for preparing superhydrophobic surface from common plastics. Moreover, it demonstrates that the micro/nano-binary structure is not necessary for superhydrophobicity, while unitary micro-scale structure for a polymer surface can exhibit outstanding water repellency as natural lotus.
在环境气氛下,通过一步浇铸法使用无定形聚苯乙烯(PS)轻松制备出类似甘蓝叶的聚合物表面。所得涂层表现出优异的超疏水性,且仅具有单一的微米级结构,类似于天然甘蓝叶。此外,简单的形貌分析也大致验证了分支和交织的棒状及凸起的超疏水结构。该工艺为从普通塑料制备超疏水表面提供了相当简便的方法。而且,这表明超疏水性并非必需微/纳二元结构,而聚合物表面的单一微米级结构就能展现出如天然荷叶般出色的拒水性。