High Voltage in Hole Conductor Free Organo Metal Halide Perovskite Solar Cells
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Abstract
One of the attractive properties of organo metal halide perovskite is its ability to gain high open-circuit voltage (V oc) with a high ratio of qV oc/E g. Several works demonstrate high V oc in perovskite-based solar cells which have hole transport material layer (HTM).
Keywords
Power Conversion Efficiency Contact Potential Difference Hole Conductor Perovskite Solar Cell Recombination Lifetime
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References
- 1.Dymshits A, Rotem A, Etgar L (2014) High voltage in hole conductor free organo metal halide perovskite solar cells. J Mater Chem A 2:20776–20781Google Scholar
- 2.Cai B, Xing Y, Yang Z, Zhang WH, Qiu J (2013) High performance hybrid solar cells sensitized by organolead halide perovskites. Energy Environ Sci 6:1480Google Scholar
- 3.Edri E, Kirmayer S, Cahen D, Hodes G (2013) High open-circuit voltage solar cells based on organic-inorganic lead bromide perovskite. J Phys. Chem Lett 4:897–902CrossRefGoogle Scholar
- 4.Edri E, Kirmayer S, Kulbak M, Hodes G, Cahen D (2014) Chloride inclusion and hole transport material doping to improve methyl ammonium lead bromide perovskite-based high open-circuit voltage solar cells. J Phys Chem Lett 5:429–433CrossRefGoogle Scholar
- 5.Ryu S, Noh JH, Jeon NJ,Kim YC, Yang WS, Seo J, Seok SI (2014) Voltage output of efficient perovskite solar cells with high open-circuit voltage and fill factor. Energy Environ Sci. doi: 10.1039/c4ee00762j
- 6.Chiang YF, Jeng JY, Lee MH, Peng SR, Chen P, Guo TF, Wen TC, Hsu YJ, Hsu CM (2014) High voltage and efficient bilayer heterojunction solar cells based on an organic–inorganic hybrid perovskite absorber with a low-cost flexible substrate. Phys Chem Chem Phys 16:6033Google Scholar
- 7.Kim H-S, Mora-Sero I, Gonzalez-Pedro V, Fabregat-Santiago F, Juarez-Perez EJ, Park N-G, Bisquert J (2013) Mechanism of carrier accumulation in perovskite thin-absorber solar cells. Nat commun. doi: 10.1038/ncomms3242 Google Scholar
- 8.Zhu K, Jang S-R, Frank AJ (2011) Impact of high charge-collection efficiencies and dark energy-loss processes on transport, recombination, and photovoltaic properties of dye-sensitized solar cells. J Phys Chem Lett 2:1070–1076CrossRefGoogle Scholar
- 9.Zhao Y, Zhu K (2013) Charge transport and recombination in perovskite (CH3NH3) PbI3 sensitized TiO2 solar cells. J Phys Chem Lett 4:2880–2884CrossRefGoogle Scholar
- 10.Zhao Y, Nardes AM, Zhu K (2014) Solid-state mesostructured perovskite CH3NH3PbI3 solar cells: charge transport, recombination, and diffusion length. J Phys Chem Lett 5:490–494CrossRefGoogle Scholar
- 11.Hao F, Stoumpos CC, Chang RPH, Kanatzidis MG (2014) Anomalous band gap behavior in mixed Sn and Pb perovskites enables broadening of absorption spectrum in solar cells. J Am Chem Soc 136:8094–8099CrossRefGoogle Scholar
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© The Author(s) 2016