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结构特征对SiO基涂层超疏水性的影响

Effect of Structural Features on the Superhydrophobicity of SiO-Based Coatings.

作者信息

Castro Lucas D C, Larocca Nelson M, Pessan Luiz A

机构信息

Graduate Program in Materials Science and Engineering, Federal University of São Carlos, via Washington Luiz, Km 235, 13565-905 São Carlos, SP, Brazil.

出版信息

Langmuir. 2021 Jan 12;37(1):124-131. doi: 10.1021/acs.langmuir.0c02598. Epub 2020 Dec 21.

Abstract

A detailed correlation between topographical features and wettability of chemically modified coatings based on silica nanoparticles (SiO) was performed. In this study, hierarchical structures were prepared by the layer-by-layer (LbL) technique using two different approaches: random roughened surfaces were obtained by exploring stacking defects spontaneously arisen after 15, 30, and 45 assembly cycles of 22 nm SiO, and a particular structure, commonly known as raspberry-like, was obtained by depositing 22 nm SiO over the first deposited 400 nm SiO. As an intrinsic attribute of the assembly process, the average slope of random roughened surfaces seems to be constant and virtually independent of the number of deposited layers. Additionally, the local slopes are always lower than a critical value (Φ) required to stabilize the solid-liquid-air interface; thus, a fully wetted Wenzel state is invariably observed with water contact angles (WCAs) ∼130°. On the other hand, since the local slopes of the raspberry-like structure follow a nearly spherical curvature, small SiO can stabilize the solid-liquid-air interface by increasing the local contact angle and avoid the deep penetration of water into the surface asperities, resulting in a WCA ∼167°. The results also suggest that nanoroughness might also play an important role in the pinning effect of the solid-liquid-air contact line, favoring the maintenance of superhydrophobicity of raspberry-like surfaces.

摘要

对基于二氧化硅纳米颗粒(SiO)的化学改性涂层的形貌特征与润湿性之间的详细相关性进行了研究。在本研究中,采用两种不同方法通过层层(LbL)技术制备了分级结构:通过探索22 nm SiO经过15、30和45个组装循环后自发出现的堆积缺陷获得随机粗糙表面,通过在首次沉积的400 nm SiO上沉积22 nm SiO获得一种特殊结构,通常称为覆盆子状结构。作为组装过程的一个固有属性,随机粗糙表面的平均斜率似乎是恒定的,并且实际上与沉积层数无关。此外,局部斜率总是低于稳定固-液-气界面所需的临界值(Φ);因此,总是观察到水接触角(WCA)约为130°的完全润湿的文泽尔状态。另一方面,由于覆盆子状结构的局部斜率遵循近似球形的曲率,小的SiO可以通过增加局部接触角来稳定固-液-气界面,并避免水深入表面粗糙度中,从而导致WCA约为167°。结果还表明,纳米粗糙度在固-液-气接触线的钉扎效应中可能也起着重要作用,有利于维持覆盆子状表面的超疏水性。

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