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Required Material Properties for High-Efficiency CIGS Modules

机译:高效CIGS模块所需的材料属性

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Relatively high proven efficiencies of CIGS devices are often cited regarding its choice as a semiconductor for photovoltaic manufacturing. Module efficiency is an important parameter, as a number of factors in the cost per watt are driven downward by increasing efficiency. Some of these factors include materials costs, throughput for a given capital investment, and installation costs. Thus, realizing high-efficiency (e.g. 15%) large-area CIGS modules is key in both reducing cost per watt and differentiating the technology from other thin films. This paper discusses the material properties required of each layer of the CIGS device such that large-area CIGS modules can achieve efficiencies 15%, which is substantially higher than the current industrial state-of-the-art. The sensitivity of module performance to the important material parameters is quantified based on both experimental data and modeling. Necessary performance differences between small-area devices and large-area modules imposed by geometry are also quantified. Potential technical breakthroughs that may relax the requirements for each layer are discussed.
机译:对于CIGS器件作为光伏制造半导体的选择,通常会引用相对较高的经验证效率。模块效率是一个重要的参数,因为提高效率会降低每瓦成本中的许多因素。其中一些因素包括材料成本,给定资本投资的吞吐量和安装成本。因此,实现高效率(例如15%)的大面积CIGS模块是降低每瓦成本和使该技术与其他薄膜区分开来的关键。本文讨论了CIGS器件每一层所需的材料特性,以使大面积CIGS模块可以达到15%的效率,这大大高于当前的工业最新技术水平。基于实验数据和建模,可以量化模块性能对重要材料参数的敏感性。还量化了小面积设备和大面积模块之间由几何构成的必要性能差异。讨论了可能放松各层要求的潜在技术突破。

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