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The effect of surface passivation on the structure of sulphur-rich PbS colloidal quantum dots for photovoltaic application

机译:表面钝化对光伏应用富硫PbS胶体量子点结构的影响

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摘要

The use of PbS colloidal quantum dots in photovoltaic devices is very promising because of their simple and low cost production processes and their unique properties, such as bandgap tunability and potential multiple exciton generation. Here we report the synthesis of PbS nanocrystals used for application in solar cells. The sulphur-rich nature of their surface appears to be caused by the exposure to ambient conditions. The use of methanol as medium during the ligand exchange process has a crucial role in the removal of native oleate ligands. Without proper ligand exchange, the unpassivated surface is subject to ambient hydroxylation leading to the depletion of Pb atoms and the formation of a polysulfide phase. Devices assembled with this material showed good performance with an efficiency of 3.2%.
机译:在光伏器件中使用PbS胶体量子点非常有前途,因为它们的生产过程简单且成本低廉,并且具有独特的性能,例如带隙可调谐性和潜在的多重激子产生。在这里,我们报告用于太阳能电池的PbS纳米晶体的合成。它们表面的富硫性质似乎是由于暴露于环境条件引起的。在配体交换过程中使用甲醇作为介质在去除天然油酸酯配体中起着至关重要的作用。没有适当的配体交换,未钝化的表面会发生环境羟基化,从而导致Pb原子消耗并形成多硫化物相。用这种材料组装的设备表现出良好的性能,效率为3.2%。

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