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Elucidating the effect of the lead iodide complexation degree behind the morphology and performance of perovskite solar cells

机译:阐明碘化铅的影响形态和背后的络合程度钙钛矿的太阳能电池的性能

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The inclusion of iodide additives in hybrid perovskite precursor solutions has been successfully exploited to improve the solar cell efficiency but their impact on perovskite formation, morphology and photovoltaic performance is still not clear. Here an extensive analysis of the effect of iodide additives in the solution-phase and during the perovskite film formation, as well as their effect on device performance is provided. The results demonstrate that in the solution-phase the additives promote the formation of lead poly-iodide species resulting in the disaggregation of the inorganic lead iodide framework and in the formation of smaller nuclei inducing the growth of uniform and smooth perovskite films. Most importantly, the complexation capability of different iodide additives does not only directly affect film morphology but also influences the density of defect states by varying the stoichiometry of precursors. These findings demonstrate that the fine control of the interactions of the chemical species in the solution-phase is essential for the precise control of the morphology at the nanoscale and the growth of the perovskite films with a reduced density of defect states. Therefore, the in-depth understanding of all the processes involved in the solution-phase is the first step for the development of a facile and reproducible approach for the fabrication of hybrid perovskite solar cells with enhanced photovoltaic performance.
机译:将碘化添加剂混合钙钛矿前体的解决方案成功利用来提高太阳能电池但是他们对钙钛矿的影响效率形成、形态和光伏性能还不清楚。分析的碘化添加剂的影响液相在钙钛矿的电影形成,以及他们对设备的影响提供性能。溶液相添加剂促进铅poly-iodide物种的形成导致无机的解集碘化铅框架的形成小核诱导制服,的增长光滑的钙钛矿的电影。碘化不同的络合能力添加剂不仅直接影响电影形态,也影响的密度通过不同的化学计量的缺陷状态体细胞。精细化学的相互作用的控制物种的液相是至关重要的精确控制的形态纳米钙钛矿和增长的电影减少缺陷密度状态。因此,深入了解的液相的过程温和的和发展的第一步可再生的方法制造的杂化钙钛矿和提高太阳能电池光电性能。

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