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Dynamic study of highly efficient CdS/CdSe quantum dot-sensitized solar cells fabricated by electrodeposition

机译:电沉积制备高效CdS / CdSe量子点敏化太阳能电池的动态研究

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摘要

An in situ electrodeposition method is described to fabricate the CdS or/and CdSe quantum dot (QD) sensitized hierarchical TiO_2 sphere (HTS) electrodes for solar cell application. Intensity modulated photocurrent spectroscopy (IMPS), intensity modulated photovoltage spectroscopy (IMVS) and electrochemical impedance spectroscopy (EIS) measurements are performed to investigate the electron transport and recombination of quantum dot-sensitized solar cells (QDSSCs) based on HTS/CdS, HTS/CdSe, and HTS/CdS/CdSe photoelectrodes. This dynamic study reveals that the CdSe/CdS cosensitized solar cell performs ultrafast electron transport and high electron collection efficiency (98%). As a consequence, a power conversion efficiency as high as 4.81% (J_(SC) = 18.23 mA cm~(-2), V_(OC) = 489 mV, FF = 0.54) for HTS/CdS/CdSe photoelectrode based QDSSC is observed under one sun AM 1.5 G illumination (100 mW cm~(-2)).
机译:描述了一种原位电沉积方法来制造用于太阳能电池的CdS或/和CdSe量子点(QD)敏化分层TiO_2球(HTS)电极。进行了强度调制光电流谱(IMPS),强度调制光电压谱(IMVS)和电化学阻抗谱(EIS)测量,以研究基于HTS / CdS,HTS /的量子点敏化太阳能电池(QDSSC)的电子传输和复合。 CdSe和HTS / CdS / CdSe光电电极。这项动态研究表明,CdSe / CdS共敏化太阳能电池具有超快的电子传输速度和较高的电子收集效率(98%)。结果,对于基于HTS / CdS / CdSe光电极的QDSSC,功率转换效率高达4.81%(J_(SC)= 18.23 mA cm〜(-2),V_(OC)= 489 mV,FF = 0.54)。在1个AM 1.5 G光照(100 mW cm〜(-2))下观察到。

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