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Structure-Infrared Optical Property-Correlations of C,O,H-Polymers for Transparent Insulation and Greenhouse Applications

机译:用于透明绝缘和温室应用的C,O,H聚合物的结构红外光学性质相关

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In this paper an understanding of the physical relationships between the material structure and the temperature dependent infrared optical properties of different transparent polymer films for solar applications is described.The infrared optical properties are relevant for the heat transport of e.g.greenhouse and transparent insulation structures.The properties were determined based on infrared transmittance measurements and the assumption of a constant index of refraction from the visible range.To establish structure-property-correlations molecular structure parameters such as the concentration of carbon-oxygen single bonds and carbon-hydroxyl groups were determined.For 50mu m thick films a good correlation between the concentration of the functional carbon-hydroxyl and the carbon-oxygen group and the infrared optical thickness as well as the hemispherical emittance was found.This correlation fits well for high and low infrared radiation absorbing polymeric materials consisting of carbon,hydrogen,and oxygen atoms.The carbon-hydroxyl group appears to be slightly more effective than the carbon-oxygen single bond.Interestingly,the correlation works for polymers with aromatic(PC,PET)and aliphatic(PMMA,CTA,ethylene copolymers)groups.
机译:本文介绍了太阳能应用中不同透明聚合物薄膜的材料结构与温度相关的红外光学特性之间的物理关系,红外光学特性与温室和透明绝缘结构的热传递有关。通过红外透射率测量和在可见光范围内恒定折射率的假设来确定其性质。确定结构性质相关的分子结构参数,例如碳氧单键和碳羟基的浓度。对于50μm厚的膜,发现官能碳羟基和碳氧基团的浓度与红外光学厚度以及半球形发射率之间具有良好的相关性,该相关性非常适合高和低吸收红外辐射的聚合物材料由汽车组成键,氢和氧原子。碳羟基似乎比碳氧单键更有效。有趣的是,这种相关性适用于具有芳族(PC,PET)和脂族(PMMA,CTA,乙烯共聚物)的聚合物)组。

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