Amide-Catalyzed Phase-Selective Crystallization Reduces Defect Density in Wide-Bandgap Perovskites

被引:94
作者
Kim, Junghwan [1 ]
Saidaminov, Makhsud I. [1 ]
Tan, Hairen [1 ]
Zhao, Yicheng [1 ]
Kim, Younghoon [1 ]
Choi, Jongmin [1 ]
Jo, Jea Woong [1 ]
Fan, James [1 ]
Quintero-Bermudez, Rafael [1 ]
Yang, Zhenyu [1 ]
Quan, Li Na [1 ]
Wei, Mingyang [1 ]
Voznyy, Oleksandr [1 ]
Sargent, Edward H. [1 ]
机构
[1] Univ Toronto, Dept Elect & Comp Engn, 10 Kings Coll Rd, Toronto, ON M5S 3G4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
amides; defects; perovskite solar cells; wide-bandgap perovskites; SOLAR-CELLS; HALIDE PEROVSKITES; EFFICIENT; PERFORMANCE; IODIDE; FORMAMIDINIUM; SEGREGATION; MANAGEMENT; STABILITY; SILICON;
D O I
10.1002/adma.201706275
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Wide-bandgap (WBG) formamidinium-cesium (FA-Cs) lead iodide-bromide mixed perovskites are promising materials for front cells well-matched with crystalline silicon to form tandem solar cells. They offer avenues to augment the performance of widely deployed commercial solar cells. However, phase instability, high open-circuit voltage (V-oc) deficit, and large hysteresis limit this otherwise promising technology. Here, by controlling the crystallization of FA-Cs WBG perovskite with the aid of a formamide cosolvent, light-induced phase segregation and hysteresis in perovskite solar cells are suppressed. The highly polar solvent additive formamide induces direct formation of the black perovskite phase, bypassing the yellow phases, thereby reducing the density of defects in films. As a result, the optimized WBG perovskite solar cells (PSCs) (Eg approximate to 1.75 eV) exhibit a high Voc of 1.23 V, reduced hysteresis, and a power conversion efficiency (PCE) of 17.8%. A PCE of 15.2% on 1.1 cm(2) solar cells, the highest among the reported efficiencies for large-area PSCs having this bandgap is also demonstrated. These perovskites show excellent phase stability and thermal stability, as well as long-term air stability. They maintain approximate to 95% of their initial PCE after 1300 h of storage in dry air without encapsulation.
引用
收藏
页数:6
相关论文
共 42 条
  • [1] Highly Reproducible Perovskite Solar Cells with Average Efficiency of 18.3% and Best Efficiency of 19.7% Fabricated via Lewis Base Adduct of Lead(II) Iodide
    Ahn, Namyoung
    Son, Dae-Yong
    Jang, In-Hyuk
    Kang, Seong Min
    Choi, Mansoo
    Park, Nam-Gyu
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2015, 137 (27) : 8696 - 8699
  • [2] Monolithic perovskite/silicon-heterojunction tandem solar cells processed at low temperature
    Albrecht, Steve
    Saliba, Michael
    Baena, Juan Pablo Correa
    Lang, Felix
    Kegelmann, Lukas
    Mews, Mathias
    Steier, Ludmilla
    Abate, Antonio
    Rappich, Joerg
    Korte, Lars
    Schlatmann, Rutger
    Nazeeruddin, Mohammad Khaja
    Hagfeldt, Anders
    Graetzel, Michael
    Rech, Bernd
    [J]. ENERGY & ENVIRONMENTAL SCIENCE, 2016, 9 (01) : 81 - 88
  • [3] [Anonymous], 1989, ENERGY ENV SCI
  • [4] [Anonymous], 2015, ADV SCI
  • [5] Semi-transparent perovskite solar cells for tandems with silicon and CIGS
    Bailie, Colin D.
    Christoforo, M. Greyson
    Mailoa, Jonathan P.
    Bowring, Andrea R.
    Unger, Eva L.
    Nguyen, William H.
    Burschka, Julian
    Pellet, Norman
    Lee, Jungwoo Z.
    Graetzel, Michael
    Noufi, Rommel
    Buonassisi, Tonio
    Salleo, Alberto
    McGehee, Michael D.
    [J]. ENERGY & ENVIRONMENTAL SCIENCE, 2015, 8 (03) : 956 - 963
  • [6] Defect-Assisted Photoinduced Halide Segregation in Mixed-Halide Perovskite Thin Films
    Barker, Alex J.
    Sadhanala, Aditya
    Deschler, Felix
    Gandini, Marina
    Senanayak, Satyaprasad P.
    Pearce, Phoebe M.
    Mosconi, Edoardo
    Pearson, Andrew J.
    Wu, Yue
    Kandada, Ajay Ram Srimath
    Leijtens, Tomas
    De Angelis, Filippo
    Dutton, Sian E.
    Petrozza, Annamaria
    Friend, Richard H.
    [J]. ACS ENERGY LETTERS, 2017, 2 (06): : 1416 - 1424
  • [7] Cesium Lead Halide Perovskites with Improved Stability for Tandem Solar Cells
    Beal, Rachel E.
    Slotcavage, Daniel J.
    Leijtens, Tomas
    Bowring, Andrea R.
    Belisle, Rebecca A.
    Nguyen, William H.
    Burkhard, George F.
    Hoke, Eric T.
    McGehee, Michael D.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2016, 7 (05): : 746 - 751
  • [8] Low-Temperature Fabrication of Efficient Wide-Bandgap Organolead Trihalide Perovskite Solar Cells
    Bi, Cheng
    Yuan, Yongbo
    Fang, Yanjun
    Huang, Jinsong
    [J]. ADVANCED ENERGY MATERIALS, 2015, 5 (06)
  • [9] Sequential deposition as a route to high-performance perovskite-sensitized solar cells
    Burschka, Julian
    Pellet, Norman
    Moon, Soo-Jin
    Humphry-Baker, Robin
    Gao, Peng
    Nazeeruddin, Mohammad K.
    Graetzel, Michael
    [J]. NATURE, 2013, 499 (7458) : 316 - +
  • [10] 23.6%-efficient monolithic perovskite/silicon tandem solar cells with improved stability
    Bush, Kevin A.
    Palmstrom, Axel F.
    Yu, Zhengshan J.
    Boccard, Mathieu
    Cheacharoen, Rongrong
    Mailoa, Jonathan P.
    McMeekin, David P.
    Hoye, Robert L. Z.
    Bailie, Colin D.
    Leijtens, Tomas
    Peters, Ian Marius
    Minichetti, Maxmillian C.
    Rolston, Nicholas
    Prasanna, Rohit
    Sofia, Sarah
    Harwood, Duncan
    Ma, Wen
    Moghadam, Farhad
    Snaith, Henry J.
    Buonassisi, Tonio
    Holman, Zachary C.
    Bent, Stacey F.
    McGehee, Michael D.
    [J]. NATURE ENERGY, 2017, 2 (04):