Abstract One-pot hydrothermal synthesis of thioglycolic acid-capped CdSe quantum dots-sensitized mesoscopic TiO <ce:inf loc='post'>2</ce:inf> photoanodes for sensitized solar cells
首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >One-pot hydrothermal synthesis of thioglycolic acid-capped CdSe quantum dots-sensitized mesoscopic TiO 2 photoanodes for sensitized solar cells
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One-pot hydrothermal synthesis of thioglycolic acid-capped CdSe quantum dots-sensitized mesoscopic TiO 2 photoanodes for sensitized solar cells

机译:一锅水热合成巯基乙酸 - 封装Cdse量子点 - 敏化的介质TiO 2 敏化太阳能电池的光电码

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AbstractIn this work, colloidal CdSe QDs capped with a short chain thiol ligand thioglycolic acid (TGA) were prepared using a one-pot synthesis route in aqueous medium. This method integrates colloidal QDs synthesis and assembly of QDs in a single step due to the use of TGA, which serves as a stabilizer to control the formation of QDs and a linker to tether CdSe QDs to TiO2during the synthesis of QDs, and it could achieve high surface coverage of high-quality QDs on TiO2electrodes. The hydrothermal temperature is found to play an important role in determining the size of CdSe QDs and photovoltaic properties of the resulting TiO2/CdSe photoanodes. To further improve the fill factor and efficiency of solar cells, PbS/CuS films were prepared with chemical bath deposition method and used instead of the usual Pt as counter electrodes (CEs). PbS/CuS CEs show superior electrocatalytic activity for the reduction of polysulfide than Pt. An optimized TiO2/CdSe based QDSSC in combination with the PbS/CuS CEs achieved a champion PCE of 4.18% under one sun illumination (100mWcm?2).Highlights?CdSe QDs were synthesized and assembled onto Ti
机译:<![cdata [ 抽象 在这项工作中,使用在含水中的单盆合成途径加上短链硫醇配体巯基吡乙酸(TGA)的胶体Cdse QD。中等的。由于使用TGA,该方法将胶体QDS合成和QD组件集成在一起,这用作稳定器以控制QDS的形成和将CDSE QDS的形成和接头,为TIO 2 在QDS的合成期间,它可以在TIO中实现高质量QDS的高表面覆盖 2 电极。发现水热温度在确定CDSE QDS和所得TiO的光伏性能下发挥重要作用 2 / CDSE PhotoCode。为了进一步提高太阳能电池的填充因子和效率,用化学浴沉积方法制备PBS / CUS膜,并使用代替通常的Pt作为反电极(CES)。 PBS / CUS CES显示出优异的电催化活性,用于减少多硫化物而不是PT。优化的TiO 2 / CDSE基于PBS / CUS CES的QDSSC在一个太阳照明下实现了4.18%的冠军PCE(100MWCM ?2 )。 < ce:section-title id =“sect0010”>突出显示 Cdse QDS被合成并组装到TI上

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