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Transparent and Hard Zirconia-Based Hybrid Coatings with Excellent Dynamic/Thermoresponsive Oleophobicity, Thermal Durability, and Hydrolytic Stability

机译:具有优异的动态/热响应疏油性,热耐久性和水解稳定性的透明和硬质氧化锆基杂化涂料

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Smooth, transparent, and extremely hard zirconia (ZrO2)-based inorganic—organic hybrid films showing excellent dynamic oleophobicity, thermal durability, and hydrolytic stability were successfully prepared through a simple combination of zirconium tetrapropoxide (Zr(O(CH2)2CH3)4) with stearic acids. In this study, we have particularly focused on the effects of stearic acid molecular architecture (linear-stearic acid (LSA) and branched-stearic acid (BSA)) on surface physical/chemical properties. Although, in each case, the resulting hybrid (Zr:LSA and Zr:BSA) films achieved by a simple spin-coating method were highly smooth and transparent, the final surface properties were markedly dependent on their molecular architectures. Thanks to the thermal stability of BSA, our Zr:BSA hybrid films displayed a greatly improved thermal effective range (maximum of 200 °C), while for Zr:LSA hybrid films, serious thermal damage to surface dewetting behavior was observed at less than 150 °C. The hardness of the Zr:BSA hybrid films were markedly increased by curing at 200 °C for 1 h (from 1.95 GPa to 3.03 GPa), while maintaining their dynamic dewettability toward n-hexadecane, when compared with ZnLSA hybrid films (0.95—1,19 GPa). Small volume n-hexadecane droplets (5 μA) were easily set in motion, sliding across and off our best Zr:BSA hybrid film surfaces at low substrate tilt angles (<10°) without pinning. Moreover, they also showed thermoresponsive dynamic dewetting behavior, reasonable resistance to hydrolysis in an aqueous environment, and antifingerprint properties.
机译:通过简单组合四氧化锆(Zr(O(CH(CH2)2CH3)4),成功地制备了具有优异动态疏油性,热耐久性和水解稳定性的光滑,透明且极其坚硬的氧化锆(ZrO2)基无机-有机杂化膜。与硬脂酸。在这项研究中,我们特别关注硬脂酸分子结构(线性硬脂酸(LSA)和支链硬脂酸(BSA))对表面物理/化学性质的影响。尽管在每种情况下,通过简单的旋涂方法获得的杂化膜(Zr:LSA和Zr:BSA)都非常光滑和透明,但最终的表面性能却明显取决于其分子结构。得益于BSA的热稳定性,我们的Zr:BSA杂化膜表现出大大提高的热有效范围(最高200°C),而对于Zr:LSA杂化膜,在不到150的温度下观察到对表面脱湿行为的严重热损伤℃。与ZnLSA杂化薄膜相比,在200°C下固化1小时(从1.95 GPa到3.03 GPa)可显着提高Zr:BSA杂化薄膜的硬度,同时保持其对正十六烷的动态润湿性(0.95-1) ,19 GPa)。小体积正十六烷液滴(5μA)易于运动,可在低基板倾斜角(<10°)上横穿我们最好的Zr:BSA杂化膜表面滑动,而无需钉扎。此外,它们还表现出热响应性动态去湿行为,在水性环境中对水解的合理抵抗力以及抗指纹性能。

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