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Transparent Ultrathin Metal Electrode with Microcavity Configuration for Highly Efficient TCO-Free Perovskite Solar Cells

机译:具有微腔配置的透明超薄金属电极用于高效无TCO的钙钛矿太阳能电池

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摘要

Optical microcavity configuration is one optical strategy to enhance light trapping in devices using planar electrodes. In this work, the potential application of optical microcavity configuration with ultrathin metal electrodes in highly efficient perovskite solar cells (PSCs) was investigated. By comparing with the device with conventional indium-tin-oxide (ITO) electrodes, it is shown that by carefully designing the Ag/dielectric planar electrode, a device with an optical microcavity structure can achieve comparable—or even higher—power conversion efficiency than a conventional device. Moreover, there is a relative high tolerance for the Ag film thickness in the optical microcavity structure. When the thickness of the Ag film is increased from 8 to 12 nm, the device still can attain the performance level of a conventional device. This gives a process tolerance to fabricate devices with an optical microcavity structure and reduces process difficulty. This work indicates the great application potential of optical microcavities with ultrathin metal electrodes in PSCs; more research attention should be paid in this field.
机译:光学微腔配置是增强使用平面电极的设备中的光捕获的一种光学策略。在这项工作中,研究了具有超薄金属电极的光学微腔配置在高效钙钛矿太阳能电池(PSC)中的潜在应用。通过与具有常规铟锡氧化物(ITO)电极的设备进行比较,表明通过精心设计Ag /电介质平面电极,具有光学微腔结构的设备可以实现与功率转换效率相当甚至更高的功率转换效率。常规设备。此外,光学微腔结构中的Ag膜厚度具有相对较高的公差。当Ag膜的厚度从8nm增加到12nm时,该器件仍然可以达到常规器件的性能水平。这赋予了制造具有光学微腔结构的器件的工艺公差,并降低了工艺难度。这项工作表明具有超薄金属电极的光学微腔在PSC中的巨大应用潜力。该领域应引起更多研究关注。

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