Gollino Liam, Zheng Daming, Mercier Nicolas, Pauporté Thierry
Chimie-ParisTech, PSL Université, CNRS Institut de Recherche de Chimie-Paris (IRCP) Paris cedex 05 France.
MOLTECH-Anjou University of Angers Angers France.
Exploration (Beijing). 2023 Oct 20;4(1):20220156. doi: 10.1002/EXP.20220156. eCollection 2024 Feb.
Halide perovskite solar cells are characterized by a hysteresis between current-voltage (- curves recorded on the reverse and on the forward scan directions, and the suppression of this phenomenon has focused great attention. In the present work, it is shown that a special family of 3D perovskites, that are rendered lead -and iodide- deficient (d-HPs) by incorporating large organic cations, are characterized by a large hysteresis. The strategy of passivating defects by K, which has been successful in reducing the hysteresis of 3D perovskite perovskite solar cells, is inefficient with the d-HPs. By glow discharge optical emission spectroscopy (GD-OES), the existence of the classic iodide migration in these layers is unveiled, which is efficiently blocked by potassium cation insertion. However, it is also shown that it co-exists with the migration of the large organic cations characteristics of d-HPs which are not blocked by the alkali metal ion. The migration of those large cations is intrinsically linked to the special structure of the d-HP. It is suggested that it takes place through channels, present throughout the whole perovskite layer after the substitution of PbI units by the large cations, making this phenomenon intrinsic to the original structure of d-HPs.
卤化物钙钛矿太阳能电池的特点是在反向和正向扫描方向记录的电流-电压(- 曲线之间存在滞后现象,这种现象的抑制引起了极大关注。在本工作中,研究表明,通过掺入大的有机阳离子而使铅和碘缺乏的一类特殊的三维钙钛矿(d-HPs)具有较大的滞后现象。用钾钝化缺陷的策略在减少三维钙钛矿太阳能电池的滞后现象方面很成功,但对d-HPs却无效。通过辉光放电光发射光谱(GD-OES),揭示了这些层中经典碘化物迁移的存在,钾阳离子插入可有效阻止这种迁移。然而,研究还表明,它与d-HPs特有的大有机阳离子迁移共存,而碱金属离子无法阻止这种迁移。那些大阳离子的迁移与d-HP的特殊结构内在相关。有人认为,它是通过通道发生的,在大阳离子取代PbI单元后,通道贯穿整个钙钛矿层,使得这种现象对于d-HPs的原始结构而言是内在的。