Department of Materials, University of Oxford, Parks Road, Oxford OX1 3PH, United Kingdom.
Nano Lett. 2012 Mar 14;12(3):1522-6. doi: 10.1021/nl204323j. Epub 2012 Feb 8.
The nature of charge separation at the heterojunction interface of solution processed lead sulphide-zinc oxide colloidal quantum dot solar cells is investigated using impedance spectroscopy and external quantum efficiency measurements to examine the effect of varying the zinc oxide doping density. Without doping, the device behaves excitonically with no depletion region in the PbS layer such that only charge carriers generated within a diffusion length of the PbS/ZnO interface have a good probability of being harvested. After the ZnO is photodoped such that the doping density is near or greater than that of the PbS, a significant portion of the depletion region is found to lie within the PbS layer increasing charge extraction (p-n operation).
使用阻抗谱和外量子效率测量来研究溶液处理的硫化铅-氧化锌胶体量子点太阳能电池异质结界面处电荷分离的性质,以研究改变氧化锌掺杂密度的影响。在没有掺杂的情况下,器件表现出激子行为,在 PbS 层中没有耗尽区,因此只有在 PbS/ZnO 界面的扩散长度内产生的载流子才有很大的概率被收集。在 ZnO 被光掺杂后,掺杂密度接近或大于 PbS 的掺杂密度时,发现大部分耗尽区位于 PbS 层内,从而增加了电荷提取(p-n 操作)。