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Simple and reproducible method of preparing transparent superhydrophobic glass

机译:简单且可重现的透明超疏水玻璃的制备方法

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摘要

We demonstrate a silanization reaction-based simple and reproducible method of converting a standard microscope glass slide to a transparent superhydrophobic surface with careful controlling of the temperature, concentration, and reaction time. By optimizing the preparation conditions, the two step treatment of a glass slide (reaction with dilute methyltrichlorosilane in toluene followed by ethanol extraction) leads to ultrahigh water contact angles (>150°), i.e., water droplets sit atop the surface in the Cassie-Baxter state while the glass slide is still optically transparent. UV-vis absorption spectra confirm that the optical transmittance of the superhydrophobic glass slides can be as high as 99% (λ = 550 nm), which is superior to untreated slides (93%). Both the superhydrophobicity and optical transparency are dictated by the microscopic morphology resulting from the controlled silanization of the glass surface, for which in this study the reproducibility was achieved to be about 90%.
机译:我们展示了一种基于硅烷化反应的简单且可重现的方法,可通过仔细控制温度,浓度和反应时间将标准显微镜载玻片转换为透明的超疏水表面。通过优化制备条件,载玻片的两步处理(与甲苯中的稀甲基三氯硅烷反应,然后乙醇萃取)导致超高水接触角(> 150°),即,水滴落在Cassie-玻片仍为光学透明的百特状态。紫外可见吸收光谱证实,超疏水玻璃载玻片的光学透射率可以高达99%(λ= 550 nm),优于未处理的载玻片(93%)。超疏水性和光学透明性均由玻璃表面受控硅烷化产生的微观形态所决定,为此,在本研究中,可再现性达到约90%。

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