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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Photovoltaic properties of multilayered quantum dot/quantum rod-sensitized TiO2 solar cells fabricated by SILAR and electrophoresis
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Photovoltaic properties of multilayered quantum dot/quantum rod-sensitized TiO2 solar cells fabricated by SILAR and electrophoresis

机译:SILAR和电泳制备的多层量子点/量子棒敏化的TiO2太阳能电池的光伏性能

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A multilayered semiconductor sensitizer structure composed of three differently sized CdSe quantum rods (QRs), labeled as Q(530), Q(575), Q(590), were prepared and deposited on the surface of mesoporous TiO2 nanoparticles by electrophoretic deposition (EPD) for photovoltaic applications. By varying the arrangement of layers as well as the time of EPD, the photoconversion efficiency was improved from 2.0% with the single layer of CdSe QRs (TiO2/Q(590)/ZnS) to 2.9% for multilayers (TiO2/Q(590)Q(575)/ZnS). The optimal EPD time was shorter for the multilayered structures. The effect of CdS quantum dots (QDs) deposited by successive ionic layer adsorption and reaction (SILAR) was also investigated. The addition of CdS QDs resulted in the enhancement of efficiency to 4.1% for the configuration (TiO2/CdS/Q(590)Q(575)/ZnS), due to increased photocurrent and photovoltage. Based on detailed structural, optical, and photoelectrical studies, the increased photocurrent is attributed to broadened light absorption while the increased voltage is due to a shift in the relevant energy levels.
机译:制备了由三种不同尺寸的CdSe量子棒(QRs)组成的多层半导体敏化剂结构,分别标记为Q(530),Q(575),Q(590),并通过电泳沉积(EPD)沉积在介孔TiO2纳米颗粒的表面上)用于光伏应用。通过改变层的排列以及EPD的时间,光转换效率从单层CdSe QRs(TiO2 / Q(590)/ ZnS)的2.0%提高到多层(TiO2 / Q(590)的2.9% Q(575)/ ZnS)。多层结构的最佳EPD时间较短。还研究了连续离子层吸附和反应(SILAR)沉积的CdS量子点(QDs)的影响。由于增加的光电流和光电压,CdS QD的添加使配置(TiO2 / CdS / Q(590)Q(575)/ ZnS)的效率提高到4.1%。根据详细的结构,光学和光电研究,增加的光电流归因于更宽的光吸收,而增加的电压归因于相关能级的变化。

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