...
首页> 外文期刊>Physica status solidi >3d Photonic Crystal Intermediate Reflector For Micromorph Thin-film Tandem Solar Cell
【24h】

3d Photonic Crystal Intermediate Reflector For Micromorph Thin-film Tandem Solar Cell

机译:用于微晶薄膜串联太阳能电池的3d光子晶体中间反射器

获取原文
获取原文并翻译 | 示例
           

摘要

The concept of 3D photonic intermediate reflectors for micromorph silicon tandem solar cells has been investigated. In thin-film silicon tandem solar cells consisting of amorphous and microcrystalline silicon with two junctions of a-Si/μc-Si, efficiency enhancements can be achieved by increasing the current density in the a-Si top cell. It is one goal to provide an optimized current matching at high current densities. For an ideal photon-management between top and bottom cell, a spectrally selective intermediate reflective layer (IRL) is necessary, which is less dependent of the angle of incidence than state-of-the-art thickness dependent massive interlayers. The design, preparation and characterization of a 3D photonic thin-film filter device for this purpose has been pursued straight forward in simulation and experimental realization.rnThe inverted opal is capable of providing a suitable optical band stop with high reflectance and the necessary long wavelength transmittance as well and provides further options for improved light trapping. We have determined numerically the relative efficiency enhancement of an a-Si/μc-Si tandem solar cell using a conductive 3D-photonic crystal. We have further fabricated such structures by ZnO-replication of polymeric opals using chemical vapour deposition and atomic layer deposition techniques and present the results of their characterization. Thin film photonic IRL have been prepared at the rear side of a-Si solar cells. Completed with a back contact, this is the first step to integrate this novel technology into an a-Si/μc-Si tandem solar cell process. The spectral response of the cell is presented and compared with reference cells.
机译:已经研究了用于微晶硅串联太阳能电池的3D光子中间反射器的概念。在由非晶硅和微晶硅组成的具有a-Si /μc-Si两个结的薄膜硅串联太阳能电池中,可以通过增加a-Si顶部电池中的电流密度来实现效率增强。一个目标是在高电流密度下提供优化的电流匹配。为了在顶部和底部单元之间实现理想的光子管理,需要光谱选择性的中间反射层(IRL),该层对入射角的依赖程度要小于最新的厚度依赖的块状中间层。为此,已经在仿真和实验实现中直接进行了3D光子薄膜滤光器器件的设计,制备和表征。rn倒置蛋白石能够提供具有高反射率和必要的长波长透射率的合适的光学带阻。以及提供进一步的选项来改善光捕获。我们已经从数值上确定了使用导电3D光子晶体的a-Si /μc-Si串联太阳能电池的相对效率提高。我们使用化学气相沉积和原子层沉积技术通过聚合物蛋白石的ZnO复制进一步制造了此类结构,并展示了其表征结果。薄膜光子IRL已在a-Si太阳能电池的背面制备。完成背接触后,这是将该新技术集成到a-Si /μc-Si串联太阳能电池工艺中的第一步。显示细胞的光谱响应,并将其与参考细胞进行比较。

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