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Dye Sensitized Solar Cells with High Photo-Energy Conversion-Controll of Nano-Particle Surfaces

机译:染料敏化太阳能电池具有高光能转换控制的纳米粒子表面

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Some of factors affecting photo-conversion efficiency of dye sensitized solar cells (DSCs) are discussed in terms of TiO2 electrodes. The first topic is on the surface modification of TiO2 nano-particles, which is associated with electron traps on the surface of TiO2 nano-particles. The surface is modified with dye molecules under pressurized CO2 atmosphere to increase the surface coverage of TiO2 nano-particles with dye molecules. This increases Jsc because of an increase in the amount of dye molecules and a decrease in the amount of trapping sites on TiO2 nano-particles. In addition, the decrease in the amount of trap sites increases Voc because decreases in Voc are brought about by the recombination of I2 molecules with electrons trapped on the TiO2 surfaces. Selective staining for tandem cells is proposed. The second topic is on the contact between a SnO2/F transparent conductive layer (TCL) and nano-particles. Polishing the TCL surfaces with silica nano-particles increases the contact, resulting in Jsc increases
机译:影响染料敏化太阳能电池(DSC)的光转化效率的一些因素在TIO 2 电极方面讨论。第一主题是TiO 2 纳米颗粒的表面改性,其与TiO 2 纳米粒子表面上的电子阱相关联。用染料CO 2 气氛在染料分子进行改性表面,以增加与染料分子的TiO 2 纳米颗粒的表面覆盖。这增加了JSC,因为染料分子的量增加和TiO 2 纳米粒子上的捕获位点的减少。另外,陷阱部位量的减少增加了VOC,因为通过捕获在TiO 2 表面上的电子的Is 2 分子的重组引起了VOC的降低。提出了串联电池的选择性染色。第二个主题位于SnO 2 / f透明导电层(TCL)和纳米粒子之间的接触。用二氧化硅纳米颗粒抛光TCL表面增加了接触,导致JSC增加

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