Environmental stability study of holographic solar spectrum splitting materials

Benjamin D. Chrysler, Silvana Ayala Pelaez, Yuechen Wu, S. Vorndran, R. Kostuk
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引用次数: 2

Abstract

In this study the impact of outdoor temperature variations and solar illumination exposure on spectral filter material and holographic optical elements is examined. Although holographic components have been shown to be useful for solar spectrum splitting designs, relatively little quantitative data exist to demonstrate the extent to which these materials can withstand outdoor conditions. As researchers seek to investigate practical spectrum splitting designs, the environmental stability of holographic materials should be considered as an important factor. In the experiment presented, two holographic materials, Covestro Bayfol HX photopolymer and dichromated gelatin, and 3M reflective polymer filter materials are exposed to outdoor conditions for a period of several months. The environmental effect on absorption, spectral and angular bandwidth, peak efficiency, and Bragg matching conditions for the holograms are examined. Spectral bandwidth and transmittance of the 3M reflective filter material are also monitored. Holographic gratings are recorded, measured, and mounted on glass substrates and then sealed with a glass cover plate. The test samples are then mounted on a photovoltaic panel to simulate realistic temperature conditions and placed at an outdoor test facility in Tucson, Arizona. A duplicate set of holograms and 3M filter material is stored as a control group and periodically compared over the test period.
全息太阳光谱分裂材料的环境稳定性研究
本文研究了室外温度变化和太阳光照对光谱滤光片材料和全息光学元件的影响。虽然全息组件已被证明对太阳光谱分裂设计有用,但相对较少的定量数据存在,以证明这些材料可以承受户外条件的程度。当研究人员寻求实用的光谱分裂设计时,全息材料的环境稳定性应被视为一个重要因素。在实验中,我们将两种全息材料Covestro Bayfol HX光聚合物和重铬酸盐明胶以及3M反射聚合物过滤材料暴露在室外条件下数月。研究了环境对全息图的吸收、光谱和角带宽、峰值效率和布拉格匹配条件的影响。3M反射滤光材料的光谱带宽和透射率也被监测。全息光栅被记录,测量,并安装在玻璃基板上,然后用玻璃盖板密封。然后将测试样品安装在光伏板上以模拟真实的温度条件,并放置在亚利桑那州图森的室外测试设施中。将一组重复的全息图和3M滤光材料作为对照组存储,并在测试期间定期进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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