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3-D Simulation and Optimization of Organic Solar Cell With Periodic Back Contact Grating Electrode

机译:周期性背接触栅电极对有机太阳能电池的3D模拟与优​​化

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摘要

In this paper, we report an investigation of the optical and electrical properties of an organic solar cell (OSC) with a back contact grating architecture through 3-D numerical simulations. By using finite-element methods for both optical and transport properties, we have modeled the behavior of OSC with a grating architecture and compared with a conventional planar structure. Based on these optoelectrical simulations, we optimized the back contact grating, obtaining an increment of up to 17.5% in power conversion efficiency with respect to a planar structured OSC. This enhancement is the result of an increase of both short-circuit current and fill factor.
机译:在本文中,我们报告了通过3-D数值模拟对具有背接触光栅架构的有机太阳能电池(OSC)的光学和电学性能的研究。通过对光学和传输特性使用有限元方法,我们使用光栅结构对OSC的行为进行了建模,并与常规平面结构进行了比较。基于这些光电仿真,我们优化了背接触光栅,相对于平面结构OSC,功率转换效率提高了17.5%。这种增强是短路电流和填充因数增加的结果。

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