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Performance Enhancement of 3-Mercaptopropionic Acid-Capped CdSe Quantum-Dot Sensitized Solar Cells Incorporating Single-Walled Carbon Nanotubes

机译:结合单壁碳纳米管的3-巯基丙酸封端的CdSe量子点敏化太阳能电池的性能增强

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摘要

We fabricated a series of linker-assisted quantum-dot-sensitized solar cells based on the ex situ self-assembly of CdSe quantum dots (QDs) onto TiO2 electrode using sulfide/polysulfide (S2-/S-n(2-)) as an electrolyte and Au cathode. Our cell were combined with single-walled carbon nanotubes (SWNTs) by two techniques; One was mixing SWNTs with TiO2 electrode and the other was spraying SWNTs onto Au electrode. Absorption spectra were used to confirm the adsorption of QDs onto TiO2 electrode. Cell performance was measured on samples containing and not-containing SWNTs. Samples mixing SWNTs with TiO2 showed higher cell efficiency, on the while sample spraying SWNTs onto Au electrode showed lower efficiency compared with pristine sample (notcontaining SWNTs). Electrochemical impedance spectroscopy analysis suggested that SWNTs can act as either barriers or excellent carrier transfers according their position and mixing method.
机译:我们基于硫化物/多硫化物(S2- / Sn(2-))作为电解质在CdSe量子点(QDs)到TiO2电极上的非原位自组装的基础上,制造了一系列的链接器辅助量子点敏化太阳能电池。和金阴极。我们的电池通过两种技术与单壁碳纳米管(SWNT)结合在一起。一种是将SWNT与TiO2电极混合,另一种是将SWNT喷涂到Au电极上。吸收光谱用于确认量子点在TiO2电极上的吸附。在含有和不含SWNT的样品上测量电池性能。将SWNTs与TiO2混合的样品显示出更高的电池效率,而与原始样品(不含SWNTs)相比,将SWNTs喷涂到Au电极上的样品显示出较低的效率。电化学阻抗谱分析表明,SWNT可以根据其位置和混合方法充当屏障或出色的载流子转移。

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