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Improved Rear Surface Passivation of Cu(In,Ga)Se2 Solar Cells : A Combination of an Al2O3 Rear Surface Passivation Layer and Nano-Sized Local Rear Point Contacts

机译:改进的Cu(In,Ga)Se2太阳能电池的背面钝化:Al2O3背面钝化层和纳米级局部背面触点的组合

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摘要

An innovative rear contacting structure for copper indium gallium (di) selenide (CIGS) thin-film solar cells is developed in an industrially viable way and demonstrated in tangible devices. The idea stems from the silicon (Si) industry, where rear surface passivation layers are combined with micron-sized local point contacts to boost the open-circuit voltage (VOC) and, hence, cell efficiency. However, compared with Si solar cells, CIGS solar cell minority carrier diffusion lengths are several orders lower in magnitude. Therefore, the proposed CIGS cell design reduces rear surface recombination by combining a rear surface passivation layer and nanosized local point contacts. Atomic layer deposition of Al2O3 is used to passivate the CIGS surface and the formation of nanosphere-shaped precipitates in chemical bath deposition of CdS to generate nanosized point contact openings. The manufactured Al2O3 rear surface passivated CIGS solar cells with nanosized local rear point contacts show a significant improvement in VOC compared with unpassivated reference cells.
机译:用于铜铟镓硒(CIGS)薄膜太阳能电池的一种创新的后接触结构以工业可行的方式开发出来,并在有形器件中得到了证明。这个想法源于硅(Si)工业,在该工业中,背面钝化层与微米级局部触点相结合,以提高开路电压(VOC),从而提高电池效率。但是,与Si太阳能电池相比,CIGS太阳能电池的少数载流子扩散长度在大小上降低了几个数量级。因此,提出的CIGS电池设计通过组合背面钝化层和纳米级局部触点来减少背面重组。 Al2O3的原子层沉积用于钝化CIGS表面,并在CdS的化学浴沉积中形成纳米球状沉淀物,以产生纳米级的点接触孔。与未钝化的参比电池相比,制造的具有纳米级局部后触点的Al2O3背面钝化的CIGS太阳能电池显示出VOC的显着改善。

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