Peer Akshit, Biswas Rana, Park Joong-Mok, Shinar Ruth, Shinar Joseph
Opt Express. 2017 May 1;25(9):10704-10709. doi: 10.1364/OE.25.010704.
We demonstrate enhanced absorption in solar cells and enhanced light emission in OLEDs by light interaction with a periodically structured microlens array. We simulate n-i-p perovskite solar cells with a microlens at the air-glass interface, with rigorous scattering matrix simulations. The microlens focuses light in nanoscale regions within the absorber layer enhancing the solar cell. Optimal period of ~700 nm and microlens height of ~800-1000 nm, provides absorption (photocurrent) enhancement of 6% (6.3%). An external polymer microlens array on the air-glass side of the OLED generates experimental and theoretical enhancements >100%, by outcoupling trapped modes in the glass substrate.
我们通过光与周期性结构的微透镜阵列相互作用,展示了太阳能电池中增强的吸收以及有机发光二极管中增强的光发射。我们使用严格的散射矩阵模拟,对空气-玻璃界面处带有微透镜的n-i-p钙钛矿太阳能电池进行了模拟。微透镜将光聚焦在吸收层内的纳米级区域,从而增强了太阳能电池性能。约700 nm的最佳周期和约800 - 1000 nm的微透镜高度,使吸收(光电流)增强了6%(6.3%)。有机发光二极管空气-玻璃一侧的外部聚合物微透镜阵列,通过将玻璃基板中捕获的模式外耦合,实现了大于100%的实验和理论增强。