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Thermally-manageable superhydrophobic soot/fluorocarbon hybrid thin films

机译:热可控超疏水烟灰/碳氟化合物杂化薄膜

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摘要

This work introduces a super-hydrophobic hybrid thin film which shows the capability of thermal management. The hybrid thin film was obtained by sputtering a fluorocarbon layer on a glass substrate that has been pre-deposited by a layer of soot. Multiple characterization methods, e.g. Energy Dispersive Spectrometer (EDS), Static Contact Angle Measurement and Field Emission Scanning Electron Microscopy (FE-SEM) were employed to detect the samples' surface morphology, weight percentages of elements and super-hydrophobicity. Soot films were introduced as contrast samples to ensure the improved capability of thermal management and super-hydrophobicity for soot/fluorocarbon films. Different thickness of soot/fluorocarbon hybrid thin films were fabricated to investigate the changes of super-hydrophobic characteristics before and after electrical heating. The temperature of soot/fluorocarbon hybrid thin films was manageable to be elevated and maintained at a certain value when they were electrically activated, which shows a prospect of reducing ice/frost accumulation.
机译:这项工作介绍了一种超疏水混合薄膜,该薄膜显示了热管理的能力。通过在已经由烟灰层预沉积的玻璃基板上溅射碳氟化合物层来获得混合薄膜。多种表征方法,例如能量分散光谱仪(EDS),静态接触角测量和场发射扫描电子显微镜(FE-SEM)用于检测样品的表面形态,元素的重量百分比和超疏水性。引入烟​​灰膜作为对比样品,以确保提高烟灰/碳氟化合物膜的热管理能力和超疏水性。制备了不同厚度的烟灰/碳氟化合物杂化薄膜,以研究电加热前后超疏水特性的变化。烟灰/碳氟化合物杂化薄膜的温度可以控制地升高并在电激活时保持在一定值,这显示出减少冰/霜积聚的前景。

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