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The Spacer Cations Interplay for Efficient and Stable Layered 2D Perovskite Solar Cells

机译:高效,稳定的二维二维钙钛矿太阳能电池的间隔物阳离子相互作用

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Organic spacer cations in layered 2D (A(1))(2)(A(2))(n)-1BnX3n+1 (where A(1) is an organic cation acting as a spacer between the perovskite layers, A(2) is a monovalent cation, e.g., Cs+,CH3NH3+, CH(NH2)(2)(+)) perovskite materials improve the long-term stability of the resulting solar cells, but hamper their power conversion efficiency due to poor carrier generation/transportation. Rational guidelines are thus required to enable the design of organic spacer cations. Herein, mixed A(1) cations are employed in layered 2D perovskites to investigate the interplay between alkylamine cations and unsaturated alkylamine cations. It is revealed that alkylamine spacer cations are able to facilitate precursor assembly, which results in the orientated growth of perovskite crystals. Unsaturated alkylamine cations further lead to reduced exciton binding energy, which improves carrier pathway in the 2D perovskites. By mixing both cations, substantially improved open circuit voltage is observed in the resultant photovoltaic cells with the efficiency of 15.46%, one of the highest one based on (A(1))(2)(A(2))(3)Pb4I13 layered 2D perovskites. The generality of the design principle is further extended to other cation combinations.
机译:分层2D(A(1))(2)(A(2))(n)-1BnX3n + 1(其中A(1)是充当钙钛矿层之间的间隔基的有机阳离子)的有机间隔基阳离子)是一价阳离子,例如Cs +,CH3NH3 +,CH(NH2)(2)(+))钙钛矿材料可改善所得太阳能电池的长期稳定性,但由于载流子的产生/传输不佳而阻碍了其功率转换效率。因此,需要合理的指导方针来设计有机间隔基阳离子。在本文中,混合A(1)阳离子用于层状2D钙钛矿中,以研究烷基胺阳离子和不饱和烷基胺阳离子之间的相互作用。揭示了烷基胺间隔物阳离子能够促进前体组装,这导致钙钛矿晶体的定向生长。不饱和的烷基胺阳离子进一步导致激子结合能降低,从而改善了2D钙钛矿中的载流子途径。通过混合两种阳离子,可以在所得光伏电池中观察到显着改善的开路电压,效率为15.46%,这是基于(A(1))(2)(A(2))(3)Pb4I13的最高之一分层的2D钙钛矿。设计原理的通用性进一步扩展到其他阳离子组合。

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