Addressing the Role of 2D Domains in High-Dimensionality Ruddlesden-Popper Perovskite for Solar Cells

被引:4
|
作者
Bravetti, Gianluca [1 ,2 ]
Altamura, Davide [3 ]
Paci, Barbara [4 ]
Generosi, Amanda [4 ]
Carallo, Sonia [2 ]
Guaragno, Marco [4 ]
Gigli, Giuseppe [1 ,2 ]
Listorti, Andrea [2 ,5 ]
Grancini, Giulia [6 ,7 ]
Giannini, Cinzia [3 ]
Colella, Silvia [8 ]
Rizzo, Aurora [2 ]
机构
[1] Univ Salento, Dept Math & Phys E De Giorgi, I-73100 Lecce, Italy
[2] CNR NANOTEC Ist Nanotecnol, I-73100 Lecce, Italy
[3] CNR Ist Cristallog, I-70126 Bari, Italy
[4] CNR ISM Ist Struttura Mat, I-00133 Rome, Italy
[5] Univ Bari, Dept Chem, I-70126 Bari, Italy
[6] Univ Pavia, Dept Chem, I-27100 Pavia, Italy
[7] Univ Pavia, INSTM, I-27100 Pavia, Italy
[8] Univ Bari, CNR NANOTEC, Dipartimento Chim, I-70126 Bari, Italy
基金
巴西圣保罗研究基金会; 欧洲研究理事会;
关键词
2D perovskites; energy-dispersive X-ray reflectivity (EDXR); grazing-incidence wide-angle X-ray scattering (GIWAXS); perovskite solar cells; Ruddlesden-Popper perovskites; LIGHT; EFFICIENT; PROGRESS;
D O I
10.1002/solr.202200860
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
High-dimensionality Ruddlesden-Popper (RP) perovskites, with general formula R(2)A(n-1)B(n)X(3n+1) and high n values (n >= 5), are regarded as viable materials for photovoltaics because they feature higher stability if compared to the 3D perovskite, i.e., ABX(3), still maintaining good charge absorption and transport properties. When integrated into the actual solar cells, however, scattered, sometimes contradictory results are reported among different deposition procedures and different cations, especially for higher n resulting in not uniform morphology and mixed composition. Herein, high-dimensionality RP perovskites with n = 1, 4, 10, 20, and 40 values are systematically investigated considering the interplay between the formation of 2D domains, their distribution along the active layer, the active layer thickness, and the solar cells' performance. Given the complexity of the investigated system, combined advanced structural/morphological analyses are performed to explain solar cells' performance, finding that the 2D phase segregates at the interface with the top electrode, acting as a barrier for charge extraction, overall decreasing the short-circuit current (J(sc)). Reducing the relative amount of bulky alkylammonium cation with respect to the methylammonium, the 2D perovskite overlayer is intentionally decreased leading to a recovery of the J(sc) values, corroborating the hypothesis.
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页数:12
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