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Materials, methods and strategies for encapsulation of perovskite solar cells: From past to present

机译:用于封装Perovskite太阳能电池的材料,方法和策略:从过去到达

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摘要

In the past decade perovskite solar cells have received immense attention and an astounding advance in terms of power conversion efficiency is achieved. The best achieved power conversion efficiency for single junction device is around 25 % which is comparable to the well-established and commercialized silicon solar cell technology. The poor lifetime and stability of these devices remain a major bottleneck, which needs to be resolved quickly as these factors play a significant hurdle towards commercialization of this technology. Apart from developing new stable perovskite material and optimizing the device architecture, a robust barrier/encapsulation with high barrier performance materials is one of the best ways to address the poor lifetime/stability problems encountered in these devices. Polymer based encapsulation methodology can satisfy both the needs of maintaining a balance between processing cost and device lifetime. In this review article an extensive outline on the degradation mechanisms commonly seen in perovskite solar cells is first accounted. In depth analysis about the various requirements an encapsulant material must satisfy and different types of encapsulant materials that were used earlier as an encapsulant in perovskite solar cells are explained. Various techniques that are commonly adopted for the encapsulation procedure is discussed briefly. This review is concluded by mentioning few promising strategies in encapsulation which could help in improving the overall device stability and lifetime of perovskite solar cells.
机译:在过去的十年中,Perovskite太阳能电池已经接受了巨大的注意,并且实现了功率转换效率的令人惊讶的进展。单结装置的最佳功率转换效率约为25%,其与已建立的和商业化的硅太阳能电池技术相当。这些装置的寿命不佳和稳定性仍然是一个主要的瓶颈,需要快速解决,因为这些因素对这项技术的商业化发挥了重大障碍。除了开发新的稳定钙钛矿材料并优化设备架构,具有高屏障性能材料的强大障碍/封装是解决这些设备遇到的寿命/稳定性问题的最佳方法之一。基于聚合物的包封方法可以满足维持处理成本和设备寿命之间平衡的需求。在本篇文章中,首先占Perovskite太阳能电池中常见的降解机制的广泛概述。在深入分析关于各种要求的封装材料必须满足和不同类型的密封剂材料,其作为钙钛矿太阳能电池中的密封剂使用。简要讨论了常用程序通常采用的各种技术。通过提及封装的许多有希望的策略,结束了这篇综述,这有助于提高钙钛矿太阳能电池的整体装置稳定性和寿命。

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