首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Quantitative characterization of the optical properties of absorbing polymer films: Comparative investigation of the internal reflection intensity analysis method
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Quantitative characterization of the optical properties of absorbing polymer films: Comparative investigation of the internal reflection intensity analysis method

机译:吸收性聚合物薄膜光学特性的定量表征:内反射强度分析方法的比较研究

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摘要

Nondestructive, three-dimensional refractive-index measurements are used for the determination of both the crystallinity and orientation in thin polymer films. The prism wave-guide coupler is particularly suited for three-dimensional isotropic and anisotropic thin-film studies because of the quantitative character of the information obtained and the ease of data acquisition. It has been limited, however, to determining only the refractive index of transparent or weakly absorbing thin-film samples. On the basis of thin-film optics, this study develops a new internal reflection intensity analysis (IRIA) method, which uses the intensity information rather than the conventional mode angle values to acquire both the refractive index and the extinction coefficient over a range of transparent to highly absorbing polymer films. Therefore, the IRIA method overcomes the limitations of this prism wave-guide coupler technique, which can only measure the refractive index of a weakly absorbing sample. With a Metricon PC-2010 as the skeletal framework, a prototype instrument has been developed to apply and test the IRIA method. A study comparing both the refractive index and extinction coefficient obtained with ellipsometry, ultraviolet-visibleear-infrared reflectometry, and IRIA for solvent blue 59 dyed polystyrene films confirms that the IRIA method is effective for obtaining the three-dimensional refractive indices and extinction coefficients of polymer films. In addition, the refractive index and extinction coefficient spectrum (400-800 nm) of solvent blue 59 have been determined with the effective media theory. Furthermore, the three-dimensional complex refractive indices of highly absorbing black electrical tape, inaccessible to other optical measurement because of its surface character, has been determined by the IRIA method. (C) 2003 Wiley Periodicals, Inc. [References: 24]
机译:非破坏性的三维折射率测量用于确定聚合物薄膜中的结晶度和取向。棱镜波导耦合器由于获得的信息的定量特性和数据获取的简便性而特别适合于三维各向同性和各向异性薄膜研究。然而,仅限于确定透明或弱吸收薄膜样品的折射率。在薄膜光学的基础上,本研究开发了一种新的内部反射强度分析(IRIA)方法,该方法使用强度信息而不是常规的模式角度值来获取在一定范围的透明范围内的折射率和消光系数高吸收性的聚合物薄膜。因此,IRIA方法克服了这种棱镜波导耦合器技术的局限性,该技术只能测量弱吸收样品的折射率。以Metricon PC-2010作为骨架框架,已开发出一种原型仪器来应用和测试IRIA方法。一项通过比较椭圆偏振法,紫外可见/近红外反射法和IRIA获得的溶剂蓝59染色聚苯乙烯薄膜的折射率和消光系数的研究证实了IRIA方法对于获得三维折射率和消光系数是有效的聚合物薄膜。此外,溶剂蓝59的折射率和消光系数光谱(400-800 nm)已通过有效介质理论确定。此外,已经通过IRIA方法确定了由于其表面特性而无法进行其他光学测量的,高吸收性黑色电气胶带的三维复折射率。 (C)2003 Wiley Periodicals,Inc. [参考:24]

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