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Fabrication by Spin-Coating and Optical Characterization of Poly(styrene-co-acrylonitrile) Thin Films

机译:聚(苯乙烯 - 共丙烯腈)薄膜的旋涂和光学表征制造

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The optical characteristics of poly(styrene-co-acrylonitrile) thin films obtained by spin-coating of polymer blend in tetrahydrofuran were investigated by spectroscopic ellipsometry, spectrophotometry, and atomic force microscopy. Film thickness can be broadly varied by changing the polymer concentration.The film thickness dependence on PSAN concentration shows a non-linear behavior that can be explained by a concentration-dependent viscosity. According to previously proposed models, prepared solutions are close to the concentrated solution regime. Films show a broad transparency range and refractive index independent of film thickness. The refractive index values range from 1.55 to 1.6 in the visible range. Thermal treatment revealed good stability of the films up to 220 °C and a progressive deterioration for larger temperatures, with evident damage at 300 °C. UV-induced photodegradation was observed and results showed a progressive decrease of transmittance in the range between 200 and 300 nm but PSAN thin films show no changes when exposed to light from a solar illuminator. These investigations indicate that PSAN is an excellent candidate for thin film polymer-based optical uses like interference coatings or encapsulation of solar cells.
机译:通过光谱椭圆形测定法,分光光度法和原子力显微镜研究通过旋涂聚合物共混物中聚合物共混物的聚(苯乙烯 - 共丙烯腈)薄膜的光学特性。通过改变聚合物浓度,可以广泛地改变膜厚度。对蛋白浓度的膜厚度依赖性显示出可以通过浓度依赖性粘度解释的非线性行为。根据先前提出的模型,制备的解决方案接近浓缩溶液制度。薄膜显示宽透明度范围和与膜厚度无关的折射率。折射率值范围为1.55至1.6在可见范围内。热处理显示薄膜的良好稳定性,高达220°C,较大温度的渐变劣化,在300℃下具有明显的损伤。观察到紫外线诱导的光降解,结果显示透射率在200至300nm之间的透射率下降,但诗篇薄膜在从太阳能照明器的光线暴露于光线时没有变化。这些调查表明,斯坦是薄膜聚合物的光学用途的优异候选者,如干涉涂层或太阳能电池的封装。

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