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高温透明超疏水聚四氟乙烯 AF-2400/氧化铟锡纳米复合薄膜。

High temperature, transparent, superhydrophobic Teflon AF-2400/Indium tin oxide nanocomposite thin films.

机构信息

Center for Integrative Nanotechnology Sciences, University of Arkansas at Little Rock 2801 South University Avenue, Little Rock, AR 72204, United States of America.

出版信息

Nanotechnology. 2019 Apr 26;30(17):175702. doi: 10.1088/1361-6528/aaf262. Epub 2018 Nov 20.

Abstract

The outstanding properties of Teflon AF-2400-chemical, optical, etc-inspired us to make modifications to enhance its hydrophobicity. We prepared an AF-2400/indium tin oxide (ITO) nanocomposite by a spin coating technique at room temperature, using the AF-2400 polymer as the matrix and ITO nanoparticles as the filler. Different ITON concentrations ranging from 3 to 30 mg ml were prepared to study the effect of nanoparticle loading on the films' properties and superhydrophobicity. The effect of spin speed and annealing temperature was also studied. Atomic force microscopy, x-ray photoelectron spectroscopy, and UV-vis analysis were employed to characterize the prepared films. The results indicated that the film's low surface energy and nano/micro-features made it superhydrophobic. Increasing the ITON concentration to 15 mg ml improved the superhydrophobicity of the composite film by increasing the surface roughness. The coating showed superhydrophobic behavior with a static contact angle (SCA) around 152° and contact angle hysteresis less than 2°. The nanocomposite films also exhibited excellent thermal stability, sustaining temperatures as high as 240 °C without losing their superhydrophobic behavior. Three models, Wenzel, Cassie-Baxter, and Shuttleworth-Bailey, were used to predict the SCA. The results confirmed that the latter model gave the best prediction. In addition to superhydrophobicity, the AF-2400/ITON films coated on a glass substrate showed very high transparency-around 95% in the visible and infrared ranges. An effective medium theory, the Bergman representation, was used to simulate the transmittance of the AF-2400/ITON nanocomposites. The measured and simulated transmittance values were in good agreement in the visible range. Based on our results, this coating may be highly useful for many practical applications, including solar cell coatings, chemical resistance protective coatings, and more.

摘要

特氟龙 AF-2400 的出色性能——化学性能、光学性能等——启发我们进行改性以增强其疏水性。我们采用室温旋涂技术,以 AF-2400 聚合物为基体,氧化铟锡(ITO)纳米粒子为填料,制备了 AF-2400/ITO 纳米复合材料。我们制备了不同 ITO 浓度(3 至 30mg/ml)的纳米复合材料,以研究纳米粒子负载对薄膜性能和超疏水性的影响。还研究了旋涂速度和退火温度的影响。原子力显微镜、X 射线光电子能谱和紫外-可见分析用于表征所制备的薄膜。结果表明,薄膜的低表面能和纳米/微观形貌使其具有超疏水性。通过增加表面粗糙度,将 ITO 浓度提高到 15mg/ml 可以提高复合薄膜的超疏水性。涂层具有超疏水性,静态接触角(SCA)约为 152°,接触角滞后小于 2°。纳米复合材料薄膜还表现出优异的热稳定性,可承受高达 240°C 的温度而不失去超疏水性。我们使用了三个模型——Wenzel、Cassie-Baxter 和 Shuttleworth-Bailey——来预测 SCA。结果证实后一个模型给出了最佳预测。除了超疏水性之外,涂覆在玻璃基底上的 AF-2400/ITON 薄膜在可见光和红外范围内表现出非常高的透明度——约为 95%。我们使用有效介质理论的 Bergman 表示法来模拟 AF-2400/ITON 纳米复合材料的透光率。在可见光范围内,测量值和模拟值的透光率非常吻合。根据我们的结果,这种涂层可能在许多实际应用中非常有用,包括太阳能电池涂层、耐化学性防护涂层等。

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