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Double-Sided Transparent TiO2 Nanotube/ITO Electrodes for Efficient CdS/CuInS2 Quantum Dot-Sensitized Solar Cells

机译:双面透明TiO2纳米管/ ITO电极用于高效CdS / CuInS2量子点敏化太阳能电池

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摘要

In this paper, to improve the power conversion efficiencies (PCEs) of quantum dot-sensitized solar cells (QDSSCs) based on CdS-sensitized TiO2 nanotube (TNT) electrodes, two methods are employed on the basis of our previous work. First, by replacing the traditional single-sided working electrodes, double-sided transparent TNT/ITO (DTTO) electrodes are prepared to increase the loading amount of quantum dots (QDs) on the working electrodes. Second, to increase the light absorption of the CdS-sensitized DTTO electrodes and improve the efficiency of charge separation in CdS-sensitized QDSSCs, copper indium disulfide (CuInS2) is selected to cosensitize the DTTO electrodes with CdS, which has a complementary property of light absorption with CdS. The PCEs of QDSSCs based on these prepared QD-sensitized DTTO electrodes are measured. Our experimental results show that compared to those based on the CdS/DTTO electrodes without CuInS2, the PCEs of the QDSSCs based on CdS/CuInS2-sensitized DTTO electrode are significantly improved, which is mainly attributed to the increased light absorption and reduced charge recombination. Under simulated one-sun illumination, the best PCE of 1.42% is achieved for the QDSSCs based on CdS(10)/CuInS2/DTTO electrode, which is much higher than that (0.56%) of the QDSSCs based on CdS(10)/DTTO electrode.
机译:在本文中,为了提高基于CdS敏化的TiO2纳米管(TNT)电极的量子点敏化太阳能电池(QDSSC)的功率转换效率(PCE),在我们以前的工作的基础上采用了两种方法。首先,通过替代传统的单面工作电极,准备了双面透明TNT / ITO(DTTO)电极,以增加工作电极上量子点(QD)的负载量。其次,为了增加CdS敏化的DTTO电极的光吸收并提高CdS敏化的QDSSC中的电荷分离效率,选择了二硫化铜铟(CuInS2)使DTTO电极与CdS共敏,这具有光的互补性。 CdS吸收。测量基于这些准备好的QD敏化DTTO电极的QDSSC的PCE。我们的实验结果表明,与不使用CuInS2的CdS / DTTO电极相比,基于CdS / CuInS2敏化的DTTO电极的QDSSC的PCE显着提高,这主要归因于增加的光吸收和减少的电荷重组。在模拟的单日照下,基于CdS(10)/ CuInS2 / DTTO电极的QDSSC的最佳PCE为1.42%,远高于基于CdS(10)/的QDSSC的(0.56%)。 DTTO电极。

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