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Technological aspects of flexible CIGS solar cells and modules

机译:柔性CIGS太阳能电池和组件的技术方面

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摘要

This paper describes the technological status of and some challenges in the manufacturing of Cu(In,Ga)Se{sub}2 (CIGS)-based solar cells on flexible polymer and metal substrates. Substrate characteristics such as thermal expansion properties and stability, surface roughness, or substrate composition, strongly influence growth and properties of the following layers. For example, adhesion failure, cracking, or contamination by diffusion of impurities from the substrate may occur with some substrates. Aspects of (external) sodium incorporation into CIGS are discussed for high and low CIGS deposition temperature. Low-temperature deposition processes are particularly important when polyimide substrates are used. The electrical insulation of metal foils by dielectric barriers (e.g. SiO{sub}x or Al{sub}2O{sub}3) allows the fabrication of monolithically integrated modules. A soft and selective patterning technique based on laser scribing and mask-free photolithography is described. Working modules as large as 20 cm×30 cm were achieved with these methods.
机译:本文介绍了在柔性聚合物和金属基板上制造基于Cu(In,Ga)Se {sub} 2(CIGS)的太阳能电池的技术现状和一些挑战。基材特性(例如热膨胀特性和稳定性,表面粗糙度或基材组成)会严重影响后续层的生长和特性。例如,对于某些基板,可能会发生粘附失败,破裂或杂质从基板扩散的污染。对于高和低CIGS沉积温度,讨论了将(外部)钠掺入CIGS的方面。当使用聚酰亚胺衬底时,低温沉积工艺特别重要。金属箔通过电介质阻挡层(例如SiO {sub} x或Al {sub} 2O {sub} 3)的电绝缘允许单片集成模块的制造。描述了一种基于激光刻划和无掩模光刻的软性选择性图案化技术。通过这些方法可以实现20 cm×30 cm的工作模块。

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