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Unveiling the importance of dripping temperature control of hybrid organic-inorganic perovskite precursor solution for the fabrication of fully ambient air-processed perovskite solar cells

机译:揭示杂交有机无机钙钛矿前体溶液滴加温度控制的重要性,以制备全部环境空气加工钙钛矿太阳能电池的制备

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摘要

Given the present research momentum, the development of efficient and stable ambient air-processed perovskite solar cells (PSCs) is of the core interests of scientists dealing with perovskites for photovoltaics. Hitherto, many suitable approaches are proposed to this aim. However, according to the authors' knowledge, none of them deals with the study of the underlying mechanisms of how the temperature of perovskite precursor solution during its dripping on the substrate influences the characteristics of fully ambient air-processed PSCs. The present work demonstrates the dripping temperature control of perovskite precursor solution as a critical facile and universal approach in realizing high-humidity fabrication of PSCs. Herein, important observations regarding the effect of dripping temperature (from -20 degrees C to 100 degrees C) of MAPbI(3) precursor solution on the characteristics of fully ambient air-processed perovskite layer and carbon-based hole transport material-free PSCs are unveiled and thoroughly discussed. The results indicate that the dripping temperature of perovskite precursor solution greatly affects the affinity of perovskite nuclei and substrate active sites, the hydrophilicity of solution, as well as the crystal and chemical structure, and morphology of the perovskite layer. Subsequently, the characteristics of PSCs vary, mainly regarding the charge transport and recombination rates, while their hysteretic behavior also changes. The investigation demonstrates that a significant enhancement in the PSCs performance can be achieved by the proposed approach.
机译:鉴于目前的研究势头,高效稳定的环境空气加工的钙钛矿太阳能电池(PSC)的发展是对佩罗夫斯科斯的科学家进行光伏的核心利益。迄今为止,提出了许多合适的方法。然而,根据作者的知识,他们均不涉及研究钙钛矿前体溶液温度在其滴落在基材上的温度的潜在机制影响了完全环境空气加工PSC的特性。目前的作品显示了钙钛矿前体溶液的滴水温度控制作为实现PSC高湿度制造的临界容易和普遍方法。在此,关于MAPBI(3)前体溶液对滴水温度(从-20摄氏度至100摄氏度)对完全环境空气加工的钙钛矿层和碳孔输送材料的PSC的特性的重要观察揭开并彻底讨论过。结果表明,钙钛矿前体溶液的滴水温度大大影响了钙钛矿核和底物活性位点的亲和力,溶液的亲水性以及钙钛矿层的晶体和化学结构。随后,PSC的特性变化,主要是关于电荷传输和重组率,而其滞后行为也变化。调查表明,通过所提出的方法可以实现PSCS性能的显着增强。

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