首页> 外文会议>IEEE Photovoltaic Specialists Conference >Review of progress toward 20 efficiency flexible CIGS solar cells and manufacturing issues of solar modules
【24h】

Review of progress toward 20 efficiency flexible CIGS solar cells and manufacturing issues of solar modules

机译:审查20%效率灵活CIGS太阳能电池和太阳能模块的制造问题的进展

获取原文

摘要

Solar cells based on chalcopyrite Cu(In, Ga)Se2 (CIGS) absorber layers show the highest potential for low-cost solar electricity by yielding comparable efficiencies to polycrystalline Si wafer-based cells, while also offering inherent advantages of thin-film technology for cost reduction.Highest efficiency of 20.3% was recently achieved on rigid glass substrate. Deposition of CIGS films onto flexible substrates opens new fields of applications and could significantly decrease production costs by employing roll-to-roll manufacturing and monolithic integration of solar cells to develop modules. Whereas, some years back, it seemed difficult to reach performance levels on flexible substrates similar to that obtained on glass, recent results on flexible polyimide prove that the efficiency gap can be significantly reduced. Different materials, i.e., mostly metals or plastics, have been used as flexible substrates, with highest cell efficiency of 18.7% demonstrated on a polyimide film. Improvements in efficiencies of flexible solar cells and modules achieved over the past few decades are discussed in this paper, addressing the main characteristics of substrate materials. The technology transfer from laboratory research to large-scale industrial production of CIGS modules leads to new manufacturing challenges, mainly for CIGS deposition, interconnections of cells, and long-term performance stability.
机译:基于黄铜矿Cu(In,Ga)SE2(CIGS)吸收层的太阳能电池通过产生与多晶硅晶片基细胞产生可比的效率,显示出低成本太阳能电力的最高潜力,同时还提供了薄膜技术的固有优势降低成本。最近在刚性玻璃基板上实现了20.3%的效率。将CIGS薄膜沉积到柔性基板上打开新的应用领域,并且可以通过采用卷到卷制造和太阳能电池的单片集成来显着降低生产成本。然而,有几年后,似乎难以达到类似于玻璃上获得的柔性基材的性能水平,近期柔性聚酰亚胺的结果证明了效率间隙可以显着降低。二酰亚胺膜上,不同的材料,即大多数金属或塑料,主要是柔性衬底,最高电池效率为18.7%。本文讨论了在过去几十年中实现了柔性太阳能电池和模块的效率的改善,解决了基材材料的主要特征。从实验室研究到大规模工业生产的技术转移到CIGS模块导致新的制造挑战,主要用于CIGS沉积,细胞互连和长期性能稳定性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号