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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Air Stable PbSe Colloidal Quantum Dot Heterojunction Solar Cells: Ligand-Dependent Exciton Dissociation, Recombination, Photovoltaic Property, and Stability
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Air Stable PbSe Colloidal Quantum Dot Heterojunction Solar Cells: Ligand-Dependent Exciton Dissociation, Recombination, Photovoltaic Property, and Stability

机译:空气稳定的PbSe胶体量子点异质结太阳能电池:依赖于配体的激子解离,复合,光伏特性和稳定性

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摘要

We fabricated the long-term air stable PbSe colloidal quantum dots (CQDs) based planar heterojunction solar cells (FTO/TiO2/PbSe/Au) with relatively larger active area (0.25 cm(2)) using tetrabutylammonium iodide (TBAI, I-) as ligand in solid state ligand-exchange process. For the first time, we have achieved the whole preparation process of the device in the ambient atmosphere from PbSe CQDs collection to PbSe colloidal quantum dot solar cells (CQDSCs) fabrication, then storage and in their following measurements. Especially, TBAI-treated PbSe CQDSCs exhibited a power conversion efficiency (PCE) of 3.53% under AM 1.5 G in air, and also a remarkable long-term stability (more than 90 days) of their storage in ambient atmosphere has been identified. By contrast, 1,2-ethanedithiol (EDT), 3-mercaptopropionic acid (MPA) and cetyltrimethylammonium bromide (CTAB, Br-) treated PbSe CQDSCs were further studied. The ligand-dependent exciton dissociation, recombination, energy level shift, and air stability of PbSe CQDs treated with these different ligands were systematically investigated. It was noted that TBAI-treated PbSe CQDSCs exhibited suppressed recombination, faster charge transfer rate, and longer carrier lifetimes, which resulted in a higher PCE and long-term air stability.
机译:我们使用四丁基碘化铵(TBAI,I-)制作了具有相对较大活性面积(0.25 cm(2))的基于长期空气稳定的PbSe胶体量子点(CQDs)的平面异质结太阳能电池(FTO / TiO2 / PbSe / Au)。作为固态配体交换过程中的配体。我们首次在环境大气中实现了从PbSe CQD的收集到PbSe胶体量子点太阳能电池(CQDSC)的制造,然后存储和后续测量的整个设备制备过程。尤其是,经TBAI处理的PbSe CQDSC在空气中AM 1.5 G下表现出3.53%的功率转换效率(PCE),并且还发现了其在周围大气中的卓越长期稳定性(超过90天)。相比之下,进一步研究了1,2-乙二硫醇(EDT),3-巯基丙酸(MPA)和十六烷基三甲基溴化铵(CTAB,Br-)处理的PbSe CQDSC。系统地研究了用这些不同的配体处理的PbSe CQD的配体依赖性激子解离,重组,能级位移和空气稳定性。值得注意的是,TBAI处理的PbSe CQDSC表现出抑制的重组,更快的电荷转移速率和更长的载流子寿命,从而导致更高的PCE和长期的空气稳定性。

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