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Energy level alignment of dipolar interface layer in organic and hybrid perovskite solar cells

机译:偶极界面层在有机和杂交钙钛矿太阳能电池中的能量水平对准

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The dipole moment of interface materials has played the key role in efficient charge extraction in organic and hybrid perovskite solar cells, but the mechanisms of the interaction at the interface and of the resulting energy level alignment have not been well established. In this review, the decoupled dipole moments at the interface are investigated and clarified by using both the theoretical and experimental findings, with particular focus on dipolar interface materials and the consequent energy level alignment in organic and hybrid perovskite solar cells. The mechanisms of interface dipole moments in the interface layer are evaluated by using spontaneously and nonspontaneously aligned dipolar molecules, thereby the energy-level adjustment of the dipolar interface layer in the devices are elucidated. The diverse dipolar interface materials (e.g., self-assembled monolayers, conjugated or nonconjugated polymer, neutral molecules or electrolytes, zwitterion based molecules, electrolyte grafted copolymer) are introduced and classified according to their working mechanisms of decoupled dipole moments at the interface. We conclude that an efficient interface material and its particular treatment can be designed and developed by exploring the underlying mechanisms of the decoupled dipole moments. Therefore, device characteristics may be advanced by the insights provided in this review.
机译:界面材料的偶极力矩已经在有机和杂交钙钛矿太阳能电池中的有效电荷提取中发挥了关键作用,但界面在界面的相互作用和所得到的能级对准的机制没有得到很好的建立。在本文中,通过使用理论和实验结果,研究和阐明了界面的解耦偶极矩,特别关注了双极界面材料以及有机和杂交钙钛矿太阳能电池中的随后的能级对准。通过自发地和非直接对齐的偶极分子使用界面层中的界面偶极矩的机制,从而阐明了装置中的双极接口层的能量水平调节。各种偶极接口材料(例如,自组装的单层,共轭或非缀合的聚合物,中性分子或电解质,水解离子,电解质接枝的共聚物)被引入并根据界面上解耦偶极矩的工作机制进行分类。我们得出结论,通过探索分离的偶极矩的潜在机制,可以设计和开发有效的界面材料及其特殊处理。因此,可以通过本次审查中提供的洞察力来推进设备特征。

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