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High-efficiency CIGS submodules

机译:高效CIGS子模块

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摘要

The approaches and achievements in the development of high-efficiency CuInGaSe2 (CIGS) monolithically integrated submodules will be reported. Two types of techniques, the conventional (batch-process) and the in-line three-stage evaporation techniques, have been employed to deposit high-quality CIGS absorbers on 10 × 10-cm Mo/soda lime glass substrates. CIGS films deposited by both the conventional and the in-line evaporation techniques showed an in-depth compositional grading of In and Ga (referred as the double graded bandgap) which is a fingerprint of the three-stage evaporation process. The optimization of the integration processes such as mechanical scribing, as well as the improvement in electrical and optical properties of ZnO window layers, made possible the demonstration of high-efficency CIGS submodules with efficiencies as high as ?= 16.6% (aperture area: 67.2 cm~2) and ? = 15.8% (aperture area: 76.5 cm2) for the conventional and the in-line evaporation process, respectively.
机译:将报告开发高效CuInGaSe2(CIGS)单片集成子模块的方法和成就。常规(分批工艺)和在线三阶段蒸发技术这两种技术已被用来在10×10-cm Mo / soda石灰玻璃基板上沉积高质量的CIGS吸收剂。通过常规和在线蒸发技术沉积的CIGS膜均显示出In和Ga的深度成分分级(称为双级带隙),这是三阶段蒸发过程的指纹。机械刻划等集成工艺的优化,以及ZnO窗口层的电学和光学性能的改善,使得展示高效率CI = 16.6%的高效CIGS子模块成为可能(孔径面积:67.2) cm〜2)和?常规蒸发法和在线蒸发法分别为15.8%(孔径面积:76.5 cm2)。

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