Nanostructured TiO2 Grown by Low-Temperature Reactive Sputtering for Planar Perovskite Solar Cells

被引:30
作者
Alberti, Alessandra [1 ]
Smecca, Emanuele [1 ]
Sanzaro, Salvatore [1 ]
Bongiorno, Corrado [1 ]
Giannazzo, Filippo [1 ]
Mannino, Giovanni [1 ]
La Magna, Antonino [1 ]
Liu, Maning [2 ]
Vivo, Paola [2 ]
Listorti, Andrea [3 ,4 ]
Calabro, Emanuele [5 ]
Matteocci, Fabio [5 ]
Di Carlo, Aldo [5 ,6 ]
机构
[1] CNR IMM, Zona Ind Str 8 5, I-95121 Catania, Italy
[2] Tampere Univ, Fac Engn & Nat Sci, POB 541, FI-33101 Tampere, Finland
[3] CNR NANOTEC, Inst Nanotechnol, Via Monteroni, I-73100 Lecce, Italy
[4] Univ Salento, Dipartimento Fis, Str Prov Lecce Monteroni,Campus Ecotekne, I-73100 Lecce, Italy
[5] Univ Roma Tor Vergata, CHOSE, Dept Elect Engn, Via Politecn 1, I-00133 Rome, Italy
[6] Natl Univ Sci & Technol MISiS, LASE, Leninsky Prospect 4, Moscow 119049, Russia
基金
芬兰科学院;
关键词
thin films; tunable properties; material coupling; nanomaterials; XRR; TEM; PL; cyclic voltammetry; ELECTRON-TRANSPORT LAYER; HIGH-EFFICIENCY; BLOCKING LAYER; THIN-FILM; HALIDE PEROVSKITES; PERFORMANCE; TRANSPARENT; FABRICATION; MODULE;
D O I
10.1021/acsaem.9b00708
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Low-temperature nanostructured electron-transporting layers (ETLs) for perovskite solar cells are grown by reactive sputtering at 160 degrees C with thickness in the range 22-76 nm and further stabilization in air at 180 degrees C to improve the lattice structure and to consequently reduce charge recombination during solar cell operation. In addition, the post-deposition treatment aims at leveling differences among samples to ensure material reproducibility. Nanostructured TiO2 has a further added value in promoting the structural coupling with the perovskite layer and establishing conformal interfaces in favor of the charge extraction from the active material. Nanostructuring of the ETLs also allows the shaping of the band gap width and position with a beneficial impact on the electrical parameters, as tested in standard architecture containing methylammonium lead iodide perovskites. A balance among parameters is achieved using a 40-nm-thick TiO2 ETL with a maximum efficiency of similar to 5% reached without surface treatments or additional layers. The proposed growth methodology would be compatible with the use of flexible substrates after appropriated ETL structural adaptation. It can be likewise applied in perovskite/silicon-heterojunction tandem solar cells to fulfill the industrial demand for clean, solvent-free, reproducible, reliable, and high-throughput processes.
引用
收藏
页码:6218 / 6229
页数:23
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