润湿
润湿转变
表面能
接触角
表面光洁度
表面粗糙度
纳米技术
热力学平衡
物理
曲面(拓扑)
微观结构
固体表面
材料性能
领域(数学)
材料科学
表面工程
开发(拓扑)
热力学
机械
表面改性
热力学状态
接口(物质)
相变
工程物理
作者
Yiqing Xue,Yubo Wang,Bo Yuan,Xin Sui,Wenyan Liang
摘要
Superhydrophobic surfaces have attracted attention in various fields of research due to a plethora of potential applications, such as anti-icing solutions, the modification of textiles or functional materials in general. We discuss a three-dimensional cross-shaped microstructure based on thermodynamic models, gaining a deeper understanding of the influence of surface geometry on droplet wetting characteristics. By analyzing the relationship between equilibrium contact angle, free energy, and free energy difference, wettability and a change of wetting state are investigated. The transition criteria between the Wenzel and Cassie–Baxter wetting states are analyzed from a thermodynamic viewpoint. In addition, the enhancement of surface roughness of the proposed structure is discussed and compared with conventional pillar-shaped structures. The results provide a theoretical basis for the development of high-performance functional materials and promote their applications in fields such as interface engineering or microfluidics.
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