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| Superhydrophobicity from microstructured surface中国科学通报:英文版论文 |
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【题名】:Superhydrophobicity from microstructured surface中国科学通报:英文版论文(Superhydrophobicity from microstructured surfaceZhongGuoKeXueTongBao:YingWenBanLunWen) 【关键词】:超疏水性 微结构表面 自清洁 接触角 粗糙度 表面化学 【keywords】:ChaoShuShuiXing WeiJieGouBiaoMian ZiQingJie JieChuJiao CuCaoDu BiaoMianHuaXue 【作者】:ZHENGLijun WUXuedong LOUZeng WUDan 【来源】: 知识词典 【期刊名称】:中国科学通报:英文版(ZhongGuoKeXueTongBao:YingWenBan) 【国际标准刊号】:1001-6538 【国内统一刊号】:11-1785/N 【作者单位】:SchoolofChemistryandChemicalTechnology,ShanghaiJiaotongUniversity,Shanghai200240,China(SchoolofChemistryandChemicalTechnology,ShanghaiJiaotongUniversity,Shanghai200240,China) 【分类号】:O647.11 【页码】:-1779-1787 【出版年】:2004.17 【下载地址】:下载pdf全文 Superhydrophobieity is referred to the wet-ability of a solid surface which has a water apparent contact angle greater than 150°. It has attracted great interest in both fundamental researehes and practical applications. This paper discusses two models: Wenzel model and Cassie model, to describe the superhydrophobic states of surface. Tbe effects of surface morpholngy and microstructure on superhydrophobicity are discussed, and the internal relationship between Wenzel and Cassie states is presented. These two superhydrophobic states can coexist and they present different properties on contact angle hysteresis. It is reported that the irreversible transition can he realized from Cassie state to Wenzel state under some certain conditions. This paper also gives a review of recent progresses in the strategies of fabricating superhydrophobic surfaces hy designing microstructured or microtextured surfaces. Finally, the Fundamental research and applications of superhydrophobic surfaces are prospected.
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