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A Generalized Crystallization Protocol for Scalable Deposition of High‐Quality Perovskite Thin Films for Photovoltaic Applications

机译:用于光伏应用的高质量钙钛矿薄膜可扩展沉积的通用结晶协议

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摘要

Metal halide perovskite solar cells (PSCs) have raised considerable scientific interest due to their high cost‐efficiency potential for photovoltaic solar energy conversion. As PSCs already are meeting the efficiency requirements for renewable power generation, more attention is given to further technological barriers as environmental stability and reliability. However, the most major obstacle limiting commercialization of PSCs is the lack of a reliable and scalable process for thin film production. Here, a generic crystallization strategy that allows the controlled growth of highly qualitative perovskite films via a one‐step blade coating is reported. Through rational ink formulation in combination with a facile vacuum‐assisted precrystallization strategy, it is possible to produce dense and uniform perovskite films with high crystallinity on large areas. The universal application of the method is demonstrated at the hand of three typical perovskite compositions with different band gaps. P‐i‐n perovskite solar cells show fill factors up to 80%, underpinning the statement of the importance of controlling crystallization dynamics. The methodology provides important progress toward the realization of cost‐effective large‐area perovskite solar cells for practical applications.
机译:金属卤化物钙钛矿太阳能电池(PSC)由于其在光伏太阳能转换中的高成本效益潜力而引起了相当大的科学兴趣。由于PSC已经满足了可再生能源发电的效率要求,因此对环境稳定性和可靠性等其他技术障碍给予了更多关注。然而,限制PSC商业化的最大障碍是缺乏可靠且可扩展的薄膜生产工艺。此处报道了一种通用的结晶策略,该策略允许通过一步式刮刀涂层可控制生长高质量的钙钛矿薄膜。通过合理的油墨配方以及便捷的真空辅助预结晶策略,可以在大面积上生产出高结晶度的致密且均匀的钙钛矿薄膜。三种具有不同带隙的典型钙钛矿成分证明了该方法的普遍应用。 P-i-n钙钛矿太阳能电池的填充系数高达80%,这证明了控制结晶动力学的重要性。该方法为实现实际应用中具有成本效益的大面积钙钛矿太阳能电池提供了重要的进展。

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