Batchelder J S, Zewail A H, Cole T
Appl Opt. 1979 Sep 15;18(18):3090-110. doi: 10.1364/AO.18.003090.
Techniques and calculations are presented that give explicit expressions for the over-all performance of a luminescent solar concentrator (LSC) in terms of the intrinsic spectral response and quantum efficiency of its constituents. We examine the single dye (or inorganic ion) LSC with emphasis on the planar geometry. Preliminary data on the degradation of candidate LSC dyes under severe weathering conditions are also given. Armed with our experimental results and analysis of solar absorption, self-absorption, and solar cell efficiency, we present a new genre of solar concentrator with a theory of operation for the device.
本文介绍了一些技术和计算方法,这些方法能根据发光太阳能聚光器(LSC)各成分的本征光谱响应和量子效率,给出其整体性能的明确表达式。我们研究了单染料(或无机离子)LSC,重点关注平面几何结构。文中还给出了候选LSC染料在恶劣风化条件下的降解初步数据。基于我们的实验结果以及对太阳能吸收、自吸收和太阳能电池效率的分析,我们提出了一种新型太阳能聚光器,并阐述了该装置的工作原理。