首页> 外文会议>Thin Film Solar Technology Conference >Natural evolution inspired design of light trapping structure in thin film organic solar cells
【24h】

Natural evolution inspired design of light trapping structure in thin film organic solar cells

机译:薄膜有机太阳能电池轻俘获结构的自然演化启发设计

获取原文

摘要

Light trapping lias been developed to effectively enhance the efficiency of the thin film solar cell by extending the pathlength for light interacting with the active materials. Searching for optimal light trapping design requires a delicate balance among all the competing physical processes, including light refraction, reflection, and absorption. The existing design methods mainly depend on engineers' intuition to predefine the topology of the light-trapping structure. However, these methods are not capable of handling the topological variation in reaching the optimal design. In this work, a systematic approach based on Genetic Algorithm is introduced to design the scattering pattern for effective light trapping. Inspired by natural evolution, this method can gradually improve the performance of light trapping structure through iterative procedures, producing the most favorable structure with minimized reflection and substantial enhancement in light absorption. Both slot waveguide based solar cell and a more realistic organic solar with a scattering layer consisting of nano-scale patterned front layer is optimized to maximize absorption by strongly coupling incident sun light into the localized photonic modes supported by the multilayer system. Rigorous coupled wave analysis (RCWA) is implemented to evaluate the absorbance. The optimized slot waveguide cell achieves a broadband absorption efficiency of 48.1% and more than 3-fold increase over the Yablonovitch limit and the optimized realistic organic cell exhibits nearly 50% average absorbance over the solar spectrum with short circuit current density five times larger than the control case using planar ITO layer.
机译:开发光捕获leas以通过延长与活性材料的光相互作用的光程来有效提高薄膜太阳能电池的效率。寻找最佳光诱捕设计需要在所有竞争物理过程中进行微妙的平衡,包括光折射,反射和吸收。现有的设计方法主要取决于工程师的直觉,以预定义光捕获结构的拓扑。然而,这些方法不能处理达到最佳设计的拓扑变化。在这项工作中,引入了一种基于遗传算法的系统方法来设计用于有效光捕获的散射模式。受到自然演化的启发,这种方法可以通过迭代程序逐步提高光捕获结构的性能,产生最有利的结构,最小化的反射和光吸收的显着增强。基于槽波导的太阳能电池和具有由纳米级图案化的前层组成的散射层的更现实的有机太阳经过优化,以通过强烈地耦合入射的阳光进入多层系统支撑的局部光子模式来最大化吸收。实施严格的耦合波分析(RCWA)以评估吸光度。优化的槽波导电池达到宽带吸收效率为48.1%,而在Yablonovitch限制上增加超过3倍,优化的现实有机细胞在太阳光谱上表现出近50%的平均吸光度,短路电流密度大于大于大的五倍。使用平面ITO层的控制盒。

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