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Sputter-coated rutile-TiO2 on topological micro-structure for providing high photoresponsivity in a wide range wettability switching

机译:在拓扑微结构上溅射涂覆的金红石型TiO2,可在宽范围的润湿性切换中提供高光响应性

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This paper describes excellent performance of wettability switching by selecting a combination of attractive material and structural design. We employ sputter-coated rutile-TiO as a photoresponsive surface. In addition, the micro-pillar array with pent-roofs is designed to enhance the hydrophobicity. The pent-roof structure allows hydrophilic materials to exhibit Cassie-Baxter type superhydrophobic state by prevention of air-pockets at liquid/solid interface from liquid invasion. Rutile-TiO thin films exhibit faster recovery rate from photo-induced hydrophilic state and wider wettability transition than anatase-TiO [1]. Rutile-TiO combined with the micropillar to provide faster photoresponsivity in a wide range wettability switching is reported.
机译:本文介绍了通过选择有吸引力的材料和结构设计相结合的可湿性转换的卓越性能。我们采用溅射涂覆的金红石型TiO作为光响应表面。另外,带有五角屋顶的微柱阵列被设计用来增强疏水性。屋檐结构通过防止液/固界面处的气穴侵入液体,使亲水性材料表现出Cassie-Baxter型超疏水状态。金红石型TiO薄膜比锐钛矿型TiO [1]具有更快的光诱导亲水状态恢复速率和更宽的润湿性转变。据报道,金红石-TiO与微柱结合可在较宽的润湿性切换中提供更快的光响应性。

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