论文标题

通过对真空沉积的宽带孔孔的双接口优化,有效的全磨砂汤仪太阳能电池是太阳能电池

Efficient all-perovskite tandem solar cells by dual-interface optimisation of vacuum-deposited wide-bandgap perovskite

论文作者

Chiang, Yu-Hsien, Frohna, Kyle, Salway, Hayden, Abfalterer, Anna, Roose, Bart, Anaya, Miguel, Stranks, Samuel D.

论文摘要

串联钙钛矿太阳能电池是传统单连接太阳能电池的较低成本替代方案,全孔子kite串联光伏体系结构显示出功率转换效率高达26.4%。钙钛矿层的解决方案处理方法已实现了快速的2次临界太阳能技术,但是需要新的沉积途径来实现模块化和可扩展性,从而促进进一步的效率提高和技术采用。在这里,我们利用一种4源真空沉积方法存入Fa $ _ {0.7} $ CS $ _ {0.3} $ pb(i $ _x $ br $ _ {1-x} $ _ 3 $ perovskite,在频带通过良好的控制范围内扩大了bandgap,而不是halide的halide content the Control the Control。 We show how the combined use of a MeO-2PACz self-assembled monolayer as hole transporting material and passivation of the perovskite absorber with ethylenediammonium diiodide reduces non-radiative losses, with this dual-interface treatment resulting in efficiencies of 17.8% in solar cells based on vacuum deposited perovskites with bandgap of 1.76 eV.通过类似地钝化狭窄的带gap fa $ _ {0.75} $ cs $ _ {0.25} $ pb $ _ {0.5} $ sn $ _ {0.5} $ _3 $ _3 $ perovskite fa $ _ {0.7} $ cs $ _ {0.3} $ pb(i $ _ {0.64} $ br $ _ {0.36} $ _ 3 $,我们报告了一个2端的全玻璃锅串联池,带有冠军敞开的电路和电力转换效率的2.06 v和24.1%。我们的干沉积方法的实现使得在复杂的设备体系结构中具有很高的可重复性,为基板选择不受限制的模块化,可扩展的多开关设备打开了途径。

Tandem perovskite solar cells beckon as lower cost alternatives to conventional single junction solar cells, with all-perovskite tandem photovoltaic architectures showing power conversion efficiencies up to 26.4%. Solution-processing approaches for the perovskite layers have enabled rapid 2optimization of perovskite solar technologies, but new deposition routes are necessary to enable modularity and scalability, facilitating further efficiency improvements and technology adoption. Here, we utilise a 4-source vacuum deposition method to deposit FA$_{0.7}$ Cs$_{0.3}$Pb(I$_x$Br$_{1-x}$)$_3$ perovskite, where the bandgap is widened through fine control over the halide content. We show how the combined use of a MeO-2PACz self-assembled monolayer as hole transporting material and passivation of the perovskite absorber with ethylenediammonium diiodide reduces non-radiative losses, with this dual-interface treatment resulting in efficiencies of 17.8% in solar cells based on vacuum deposited perovskites with bandgap of 1.76 eV. By similarly passivating a narrow bandgap FA$_{0.75}$Cs$_{0.25}$Pb$_{0.5}$Sn$_{0.5}$I$_3$ perovskite and combining it with sub-cells of evaporated FA$_{0.7}$Cs$_{0.3}$Pb(I$_{0.64}$Br$_{0.36}$)$_3$, we report a 2-terminal all-perovskite tandem solar cell with champion open circuit voltage and power conversion efficiency of 2.06 V and 24.1%, respectively. The implementation of our dry deposition method enables high reproducibility in complex device architectures, opening avenues for modular, scalable multi-junction devices where the substrate choice is unrestricted.

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