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Quantum dot solar cell performance with a metal salt treatment

机译:金属盐处理的量子点太阳能电池性能

摘要

The performance of lead sulfide quantum dot (QD) photovoltaic cells is improved by exposing a QD layer to a solution containing metal salts after the synthesis of the QDs is completed. The halide ions from the salt solution passivate surface lead (Pb) sites and alkali metal ions mend Pb vacancies. Metal cations and halide anions with small ionic radius have high probability of reaching QD surfaces to eliminate surface recombination sites. Compared to control devices fabricated using only a ligand exchange procedure without salt exposure, devices with metal salt treatment show increases in both the form factor and short circuit current of the PV cell. Some embodiments comprise a method for treatment of QDs with a salt solution and ligand exchange. Other embodiments comprise a photovoltaic cell having a QD layer treated with a salt solution and ligand exchange.
机译:在QD合成完成之后,通过将QD层暴露于含有金属盐的溶液中,可以改善硫化铅量子点(QD)光伏电池的性能。盐溶液中的卤离子钝化表面铅(Pb)位,碱金属离子修复Pb空位。具有较小离子半径的金属阳离子和卤化物阴离子很可能到达QD表面,从而消除了表面重组位点。与仅使用没有盐接触的配体交换程序制造的控制设备相比,采用金属盐处理的设备显示PV电池的形状因数和短路电流均增加。一些实施方案包括用盐溶液和配体交换处理QD的方法。其他实施方案包括具有经盐溶液和配体交换处理的QD层的光伏电池。

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