...
首页> 外文期刊>Progress in photovoltaics >Development of Namo-TiO_2 Dye Sensitised Solar Cells on High Mobility Transparent Conducting Oxide Thin Films
【24h】

Development of Namo-TiO_2 Dye Sensitised Solar Cells on High Mobility Transparent Conducting Oxide Thin Films

机译:高迁移率透明导电氧化物薄膜上纳米TiO2染料敏化太阳能电池的研制

获取原文
获取原文并翻译 | 示例
           

摘要

The optical transmission of dye-sensitised solar cells (DSCs) can be tuned by altering the dye and/or particle size of the mesoporous TiO_2 layers, to allow their application as the top device in tandem solar cells. To benefit from this semi-transparency, parasitic optical losses by the transparent electrodes must be minimised. This work investigates the influence of using two different transparent conductors, namely, the high mobility material titanium doped indium oxide (ITiO) and fluorine doped tin oxide (FTO) as electrodes for semi-transparent DSCs. The overall NIR transparency through the DSCs increased significantly as each FTO electrode was replaced by an ITiO electrode. This increase was from 20-45 percent in the 1300-700 nm wavelength range for fully FTO-based cells, to about 60 percent for fully ITiO-based cells, across the same spectrum. DSCs prepared on these electrodes exhibited short circuit currents ranging from 14.0-14.9mA/cm~2. The conversion efficiency of the cell with ITiO as both the front and rear electrodes was 5-8 percent , which though significant, was lower than the 8.2 percent attained by the cell using FTO electrodes, as a result of a lower fill factor. Improvements in the ITiO thermal stability and in the processing of the TiO_2 interfacial layer are expected to improve the cell efficiency of such single DSC devices. The high current density and optical transparency of ITiO-based DSCs make them an interesting option for tandem solar cells.
机译:可以通过改变介孔TiO_2层的染料和/或颗粒大小来调整染料敏化太阳能电池(DSC)的光透射率,以使其在串联太阳能电池中用作顶部设备。为了受益于这种半透明性,必须使透明电极的寄生光损失最小。这项工作研究了使用两种不同的透明导体,即高迁移率材料掺杂​​钛的氧化铟(ITiO)和氟掺杂的氧化锡(FTO)作为半透明DSC的电极的影响。随着每个FTO电极被ITiO电极取代,通过DSC的总NIR透明度显着提高。在相同的光谱范围内,这种增长从完全基于FTO的电池在1300-700 nm波长范围内增长了20-45%,到完全基于ITiO的电池增长了约60%。在这些电极上制备的DSC表现出的短路电流范围为14.0-14.9mA / cm〜2。使用ITiO作为前电极和后电极的电池的转换效率为5-8%,尽管显着,但由于较低的填充因子,低于使用FTO电极的电池所获得的8.2%。期望改善ITiO热稳定性和TiO_2界面层的工艺以改善这种单个DSC器件的电池效率。基于ITiO的DSC的高电流密度和光学透明性使其成为串联太阳能电池的有趣选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号