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Alternative electrodes for HTMs and noble-metal-free perovskite solar cells: 2D MXenes electrodes

机译:适用于HTM和无贵金属的钙钛矿太阳能电池的替代电极:2D MXenes电极

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摘要

The high cost of hole transporting materials (HTMs) and noble metal electrodes limits the application of perovskite solar cells (PSCs). Carbon materials have been commonly utilized for HTMs and noble-metal-free PSCs. In this paper, a more conductive 2D MXene material (Ti _(3) C _(2) ), showing a similar energy level to carbon materials, has been used as a back electrode in HTMs and noble-metal-free PSCs for the first time. Seamless interfacial contact between the perovskite layer and Ti _(3) C _(2) material was obtained using a simple hot-pressing method. After the adjustment of key parameters, the PSCs based on the Ti _(3) C _(2) electrode show more stability and higher power conversion efficiencies (PCE) (13.83%, 27% higher than that (10.87%) of the PSCs based on carbon electrodes) due to the higher conductivity and seamless interfacial contact of the MXene electrode. Our work proposes a promising future application for MXene and also a good electrode candidate for HTM and the noble-metal-free PSCs.
机译:空穴传输材料(HTM)和贵金属电极的高昂成本限制了钙钛矿太阳能电池(PSC)的应用。碳材料已普遍用于HTM和不含贵金属的PSC。在本文中,具有更高导电性的二维MXene材料(Ti _(3)C _(2))具有与碳材料相似的能级,已被用作HTM和无贵金属PSC的背电极。第一次。钙钛矿层与Ti_(3)C_(2)材料之间的无缝界面接触是使用简单的热压方法获得的。调整关键参数后,基于Ti _(3)C _(2)电极的PSC表现出更高的稳定性和更高的功率转换效率(PCE)(13.83%,比PSC的功率转换效率(10.87%)高27%) (基于碳电极),这是因为MXene电极具有更高的电导率和无缝界面接触。我们的工作提出了MXene的有希望的未来应用,同时也是HTM和无贵金属PSC的良好电极候选者。

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