...
首页> 外文期刊>Journal of solid state electrochemistry >Efficiency enhancement in dye-sensitized solar cells using hierarchical TiO(2)submicron size spheres as a light scattering layer
【24h】

Efficiency enhancement in dye-sensitized solar cells using hierarchical TiO(2)submicron size spheres as a light scattering layer

机译:使用等级TiO(2)亚微米尺寸球体作为光散射层的染料敏化太阳能电池效率增强

获取原文
获取原文并翻译 | 示例
           

摘要

The photoanode of a dye-sensitized solar cell (DSSC), usually made with a nanoporous TiO(2)semiconductor layer sensitized with N719 dye, plays a crucial role in the overall power conversion efficiency as it influences both the light absorption and the electron transport. Generally, enhanced photon absorbance is achieved through light scattering in the device by employing a double-layered TiO(2)photoanode consisting of an active layer of smaller (similar to 20 nm) P25 particles and a scattering layer consisting of larger (similar to 300 nm) particles. However, due to the smaller effective surface area of the larger particle layer, the dye adsorption in the second layer is very poor, and therefore, the efficiency enhancement due to the usage of thicker photo anode is hindered. Therefore, in this study, investigations were carried out to replace the conventional, larger particle scattering layer by a morphologically different structure of TiO2. Here, the DSSC performance between two different types of scattering layers, one consisting of TiO(2)nanorods (NRs) and the other consisting of hierarchically structured TiO(2)submicron size spheres (MS) are compared. DSSC fabricated with P25/MS double-layered photoanode outperforms the DSSC fabricated with P25/NR double-layered photoanode. P25/MS-based DSSC delivered a highest short-circuit current density of 14.80 mA cm(-2)with an efficiency of 7.38%, while the efficiency of DSSC fabricated with P25/NR photoanode exhibits 7.03% efficiency. The DSSC fabricated without a scattering layer showed only 6.68% efficiency. The diffuse reflectance and dye adsorption measurements revealed that the better performance of P25/MS double-layered DSSC is largely due to the improved photon absorption facilitated by superior light scattering as well as higher dye loading by TiO(2)submicron size spheres.
机译:通常用与N719染料致敏的纳米多孔TiO(2)半导体层制成的染料敏化太阳能电池(DSSC)的光电码在整体电力转换效率下起到至关重要的作用,因为它影响光吸收和电子传输。通常,通过使用由较小(类似于20nm)P25颗粒的有源层和由更大的散射层组成的双层TiO(2)光电码,通过装置中的光散射来实现增强的光子吸光度和(类似于300 nm)粒子。然而,由于较大的颗粒层的有效表面积较小,第二层中的染料吸附非常差,因此,由于使用较厚的光阳极引起的效率增强被阻碍。因此,在该研究中,进行研究以通过TiO 2的形态学不同的结构来替换常规较大的粒子散射层。这里,比较了两种不同类型的散射层之间的DSSC性能,由TiO(2)纳米棒(NRS)组成,另一个由分层结构化TiO(2)亚微米尺寸球(MS)组成。具有P25 / MS双层光电码的DSSC优于P25 / NR双层PhotoNode制造的DSSC。基于P25 / MS的DSSC的最高短路电流密度为14.80 mA cm(-2),效率为7.38%,而用P25 / NR PhotoNode制造的DSSC的效率呈现7.03%。没有散​​射层制造的DSSC仅效率为6.68%。漫反射率和染料吸附测量显示,P25 / MS双层DSSC的更好性能主要是由于通过优异的光散射促进的显光吸收以及通过TiO(2)亚微米尺寸球体的更高染料负载促进。

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