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Graphene-covered perovskites: An effective strategy to enhance light absorption and resist moisture degradation

机译:石墨烯覆盖的钙钛矿:增强光吸收和防止水分降解的有效策略

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摘要

The long-term stability of methylammonium lead triiodide (MAPbI3) perovskite in moist environments is a paramount challenge to realise the commercialization of perovskite solar cells. In an attempt to address this concern, we have carried out systematic first-principles studies on the MAPbI3 perovskite with a hydrophobic graphene layer interfaced as a water barrier. We find there is a charge transfer at the graphene/MAPbI3 interface and electrons can be excited from graphene into the perovskite surface, leading to well separated electron–hole pairs, i.e. reduced recombination. By studying the optical properties, we find the hybrid graphene/MAPbI3 nanocomposite displays enhanced light absorption compared with the pristine MAPbI3. Furthermore, from an ab initio molecular dynamics simulation, the graphene/MAPbI3 nanocomposite is confirmed to be able to resist the reaction with water molecules, highlighting a great advantage of this nanocomposite in promoting long-term photovoltaic performance.
机译:甲基钙三碘化铅(MAPbI3)钙钛矿在潮湿环境中的长期稳定性是实现钙钛矿太阳能电池商业化的首要挑战。为了解决这个问题,我们已经对具有疏水性石墨烯层作为阻水层的MAPbI3钙钛矿进行了系统的第一性原理研究。我们发现在石墨烯/ MAPbI3界面存在电荷转移,并且电子可以从石墨烯激发到钙钛矿表面,从而导致电子-空穴对充分分离,即降低了重组。通过研究光学性能,我们发现杂化石墨烯/ MAPbI3纳米复合材料与原始MAPbI3相比显示出增强的光吸收。此外,从头算分子动力学模拟,证实了石墨烯/ MAPbI3纳米复合材料能够抵抗与水分子的反应,从而突出了该纳米复合材料在促进长期光伏性能方面的巨大优势。

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