采用纳米晶前驱体的溶液处理碲化镉太阳能电池的纳米工程

Ryan W. Crisp, Matthew G. Panthani, J. Berry, W. Rance, J. Duenow, D. Talapin, J. Luther
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引用次数: 2

摘要

我们进一步发展了碲化镉纳米晶体(NCs),为油墨基太阳能电池制造大块烧结薄膜。在这里,在吡啶自旋涂覆CdTe四足体,用CdCl2处理并短暂退火的装置中,已经实现了>10%的可观效率。我们已经将这些基于nc的CdTe层插入到三个以上具有不同接触层的器件几何形状中。在一种结构中,我们确定在ITO层和CdTe层之间形成独特的界面,在短暂的正向偏置光浸泡后提供出色的欧姆空穴接触。此外,与标准CdTe太阳能电池相比,该器件具有令人印象深刻的蓝色响应,尽管其结位于光路的后部,而不是作为窗口层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanoscale engineering of solution-processed CdTe solar cells using nanocrystalline precursors
We have furthered the development of CdTe nanocrystals (NCs) to create bulk, sintered films for ink-based solar cells. Here, respectable efficiencies of >10% have been achieved in devices where CdTe tetrapods are spincoated from pyridine, treated with CdCl2 and briefly annealed. We have inserted these NC-based CdTe layers into more than three device geometries with various contact layers. In one structure, we determine that there is a unique interface that forms between the ITO layer and CdTe layer providing excellent ohmic hole contact after a brief light soak in forward bias. Moreover, the devices have an impressive blue-response in comparison to standard CdTe solar cells despite having the junction at the back of the optical path rather than as a window layer.
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