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首页> 外文期刊>Nanoscale >Superhydrophobic-superhydrophilic binary micropatterns by localized thermal treatment of polyhedral oligomeric silsesquioxane (POSS)-silica films
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Superhydrophobic-superhydrophilic binary micropatterns by localized thermal treatment of polyhedral oligomeric silsesquioxane (POSS)-silica films

机译:Superhydrophobic-superhydrophilic二进制微型图象的局部热处理多面体低聚物的silsesquioxane(彼得)二氧化硅薄膜

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摘要

Surfaces patterned with alternating (binary) superhydrophobie-superhydrophilic regions can be found naturally, offering a bio-inspired template for efficient fluid collection and management technologies. We describe a simple wet-processing, thermal treatment method to produce such patterns, starting with inherently superhydrophobic polysilsesquioxane-silica composite coatings prepared by spray casting nanoparticle dispersions. Such coatings become superhydrophilic after localized thermal treatment by means of laser irradiation or open-air flame exposure. When laser processed, the films are patternable down to ~100 μm scales. The dispersions consist of hydrophobic fumed silica (HFS) and methylsilsesquioxane resin, which are dispersed in isopropanol and deposited onto various substrates (glass, quartz, aluminum, copper, and stainless steel). The coatings are characterized by advancing, receding, and sessile contact angle measurements before and after thermal treatment to delineate the effects of HFS filler concentration and thermal treatment on coating wettability. SEM, XPS and TGA measurements reveal the effects of thermal treatment on surface chemistry and texture. The thermally induced wettability shift from superhydrophobic to superhydrophilic is interpreted with the Cassie-Baxter wetting theory. Several micropatterned wettability surfaces demonstrate potential in pool boiling heat transfer enhancement, capillarity-driven liquid transport in open surface-tension-confined channels (e.g., lab-on-a-chip), and select surface coating applications relying on wettability gradients. Advantages of the present approach include the inherent stability and inertness of the organosilane-based coatings, which can be applied on many types of surfaces (glass, metals, etc.) with ease. The present method is also scalable to large areas, thus being attractive for industrial coating applications.
机译:表面图案与交流(二进制)superhydrophobie-superhydrophilic地区可以发现自然,提供一个仿生模板高效液体收集和管理技术。湿加工,热处理方法产生这样的模式,从本质上超疏水polysilsesquioxane-silica复合涂料由喷射铸造纳米颗粒分散体。superhydrophilic后局部热通过激光辐照或治疗露天火焰接触。电影是patternable ~ 100μm的尺度。分散体包括疏水熏硅(HFS)和methylsilsesquioxane树脂,分散在异丙醇与沉积在各种基板(玻璃、石英、铝、铜和不锈钢)。前进,后退,无柄接触角测量之前和之后热处理描绘HFS的影响填料浓度和热处理涂层的润湿性。测量揭示热的影响治疗表面化学和质地。热诱导润湿性转变超疏水superhydrophilic是解释Cassie-Baxter润湿理论。在池沸腾表面展示的潜力传热增强,capillarity-driven在开放的surface-tension-confined液体运输渠道(例如,"),并选择表面涂层应用程序依赖润湿性梯度。方法包括固有稳定性organosilane-based涂料的惰性,可以应用在许多类型的表面轻松(玻璃、金属等)。方法也可伸缩的广大地区,因此对工业涂料的吸引力应用程序。

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