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The influence of linker molecule on photovoltaic performance of CdS quantum dots sensitized translucent TiO_2 nanotube solar cells

机译:连接剂分子对CdS量子点敏化的透明TiO_2纳米管太阳能电池光伏性能的影响

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摘要

Based on translucent TiO_2 nanotube (NT) film, CdS quantum dots (QDs) were anchored onto TiO_2 NT film using different linker molecules including thioglycolic acid (TGA), mercaptopropionic acid (MPA) and cysteine via hydrothermal method. The CdS QDs sensitized TiO_2 NT (CdS/TiO_2 NT) electrodes were constructed to quantum dots-sensitized solar cells (QDSSCs). The photovoltaic performance analysis results of the QDSSCs show that the linker molecule plays a significant role in the solar cell performance. The QDSSC using cysteine as linker molecule exhibits best power conversion efficiency than the other QDSSCs using TGA or MPA as linker molecules. The incident photon-to-current conversion efficiency (IPCE) and the electrochemical impedance spectroscopy (EIS) analysis results indicate that amino group of cysteine may has two aspects of the role to improve the power conversion efficiency of the QDSSC, one is that the good charge transfer properties of the cysteine might depend on the good donor-acceptor abilities of the free electron pair of the amino group, another is that distance between the TiO_2 NT and the CdS QDs could be slightly decreased due to the cysteine could anchor the CdS QDs via both amino and thiol group.
机译:基于半透明的TiO_2纳米管(NT)薄膜,通过水热法使用巯基乙酸(TGA),巯基丙酸(MPA)和半胱氨酸等不同的连接分子将CdS量子点(QDs)固定在TiO_2NT薄膜上。将CdS QDs敏化的TiO_2 NT(CdS / TiO_2 NT)电极构建为量子点敏化的太阳能电池(QDSSC)。 QDSSC的光伏性能分析结果表明,连接分子在太阳能电池性能中起着重要作用。与使用TGA或MPA作为接头分子的其他QDSSC相比,使用半胱氨酸作为接头分子的QDSSC表现出最佳的功率转换效率。入射光子-电流转换效率(IPCE)和电化学阻抗谱(EIS)分析结果表明,半胱氨酸的氨基可能具有改善QDSSC功率转换效率的两个方面,一个是半胱氨酸的电荷转移特性可能取决于氨基的自由电子对的良好供体-受体能力,另一个是由于半胱氨酸可以锚定CdS QD,因此TiO_2 NT与CdS QD之间的距离可能会略微减小。通过氨基和硫醇基。

著录项

  • 来源
    《Journal of materials science》 |2017年第3期|2867-2876|共10页
  • 作者

    Libo Yu; Zhen Li; Hai Song;

  • 作者单位

    College of Chemistry and Chemical Engineering, Hexi University, Zhangye City 734000, Gansu Province, People's Republic of China;

    College of Chemistry and Chemical Engineering, Hexi University, Zhangye City 734000, Gansu Province, People's Republic of China;

    College of Chemistry and Chemical Engineering, Hexi University, Zhangye City 734000, Gansu Province, People's Republic of China , Key Laboratory of Hexi Corridor Resources Utilization of Gansu, Hexi University, Zhangye City 734000, Gansu Province, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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