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Planar Metasurfaces Enable High‐Efficiency Colored Perovskite Solar Cells

机译:平面超表面可实现高效彩色钙钛矿太阳能电池

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摘要

The achievement of perfect light absorption in ultrathin semiconductor materials is not only a long‐standing goal, but also a critical challenge for solar energy applications, and thus requires a redesigned strategy. Here, a general strategy is demonstrated both theoretically and experimentally to create a planar metasurface absorber comprising a 1D ultrathin planar semiconductor film (replacing the 2D array of subwavelength elements in classical metasurfaces), a transparent spacer, and a metallic back reflector. Guided by derived formulisms, a new type of macroscopic planar metasurface absorber is experimentally demonstrated with light near‐perfectly and exclusively absorbed by the ultrathin semiconductor film. To demonstrate the power and simplicity of this strategy, a prototype of a planar metasurface solar cell is experimentally demonstrated. Furthermore, the device model predicts that a colored planar metasurface perovskite solar cell can maintain 75% of the efficiency of its black counterpart despite the use of a perovskite film that is one order of magnitude thinner. The displayed cell colors have high purities comparable to those of state‐of‐the‐art color filters, and are insensitive to viewing angles up to 60°. The general theoretical framework in conjunction with experimental demonstrations lays the foundation for designing miniaturized, planar, and multifunctional solar cells and optoelectronic devices.
机译:在超薄半导体材料中实现完美的光吸收不仅是一个长期目标,而且还是太阳能应用中的关键挑战,因此需要重新设计策略。在这里,理论上和实验上都展示了一种通用策略,以创建一种平面超表面吸收器,该吸收器包括一维超薄平面半导体膜(代替经典超表面中亚波长元素的2D阵列),透明垫片和金属背反射器。在衍生公式的指导下,一种新型的宏观平面超表面吸收剂被实验证明,其光几乎完美地被超薄半导体膜吸收。为了证明此策略的强大功能和简便性,实验证明了平面超表面太阳能电池的原型。此外,该装置模型预测,尽管使用的钙钛矿薄膜的厚度要薄一个数量级,但彩色平面超表面钙钛矿太阳能电池仍可保持其黑色同类产品效率的75%。所显示的单元格颜色具有与最先进的滤色器相当的纯度,并且对60°的视角不敏感。一般的理论框架与实验演示相结合,为设计小型化,平面化,多功能太阳能电池和光电器件奠定了基础。

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