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Electrical and optical properties of ceramic-polymer nanocomposite coatings

机译:陶瓷-聚合物纳米复合涂层的电学和光学性质

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Transparent, conductive composite coatings were fabricated from suspensions of poly(vinyl acetate-acrylic) (PVAc-co-acrylic) copolymer latices (50 - 600 nm) and nanosized antimony-doped tin oxide (ATO) particles (similar to15 nm). The suspensions were deposited as coatings onto poly(ethylene terephthalate) substrates and dried at 50 degreesC. Microstructure studies using field emission scanning electron microscopy and tapping-mode atomic force microscopy (TMAFM) indicated that the latex particles coalesced during drying and forced the ATO particles to segregate into the boundaries between the latex particles. Low phase contrast was observed with TMAFM; this result was consistent with the presence of PVAc-co-acrylic in the ATO-rich phase of the composite. The conductivity of the composite coatings followed a percolation power-law equation, with the percolation threshold between 0.05 and 0.075 volume fractions of ATO and the critical conductivity exponent ranging from 1.34 to 2.32. The highest direct-current conductivity of the composite coatings was around 10(-2) S/cm. The optical transmittance and scattering behavior of the coatings were also investigated. Compared with the PVAc-co-acrylic coating, the composite coatings had lower transparency because of the Rayleigh scattering. The transparency of the composite coatings was improved by a reduction in the coating thickness. The best transparency for the coatings with a direct-current conductivity of approximately 10(-2) S/cm was around 85% at a wavelength of 600 nm. (C) 2003 Wiley Periodicals, Inc. [References: 60]
机译:透明的导电复合涂层是由聚醋酸乙烯酯-丙烯酸(PVAc-共-丙烯酸)共聚物胶乳(50-600 nm)和纳米级锑掺杂的氧化锡(ATO)颗粒(约15 nm)的悬浮液制成的。将悬浮液作为涂层沉积在聚对苯二甲酸乙二酯基底上,并在50℃下干燥。使用场发射扫描电子显微镜和敲击模式原子力显微镜(TMAFM)进行的微结构研究表明,乳胶颗粒在干燥过程中会聚结,并迫使ATO颗粒偏析到乳胶颗粒之间的边界中。用TMAFM观察到低的相衬度。该结果与在复合材料的富含ATO的相中存在PVAc-共丙烯酸是一致的。复合涂层的电导率遵循渗流幂律方程,渗流阈值为ATO的0.05至0.075体积分数,临界电导率指数为1.34至2.32。复合涂层的最高直流电导率约为10(-2)S / cm。还研究了涂层的透光率和散射行为。与PVAc-co-丙烯酸涂料相比,由于瑞利散射,复合涂料的透明度较低。复合涂层的透明性通过减小涂层厚度而得到改善。直流电导率约为10(-2)S / cm的涂层的最佳透明度在600 nm波长下约为85%。 (C)2003 Wiley Periodicals,Inc. [参考:60]

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