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3 protocols using formamidinium chloride

1

Perovskite Solar Cell Fabrication

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FAI and Methylammonium iodide (MAI) were purchased from GreatCell Solar and used without further purification. PbI2 (99.99%) was purchased from Tokyo Chemical Industry. 2-Mercaptoethanol (2-ME), DMSO, CsI (99.999%), guanidinium iodide (>99%), formamidinium chloride, phenylethylammonium chloride, zinc chloride, CBH, 2-propanol (IPA; anhydrous, 99.5%), toluene, PTAA (number average molecular weight 7000 to 10,000), and BCP (>96%) were purchased from Sigma-Aldrich. C60 (>99.55%) was purchased from Nano-C. Formamidinium hypophosphite was synthesized via a method that was based on, and modified from, a previously published method.
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2

Synthesis and Characterization of Perovskite Materials

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Lead bromide (PbBr 2, 98%), dimethylformamide (DMF, 99.8%), formamidinium chloride (98% Purity), octylamine (99%), Bis[2-(methacryloyloxy)ethyl] phosphate (BMEP), and poly(methyl methacrylate) (PMMA, average Mw 350,000) were purchased from Sigma Aldrich. Toluene (≥99.8%) and oleic acid (<70%) were purchased from Fisher Scientific. Formamidinium bromide (>99.5%) was purchased from Osilla (Sheffield, UK). Lead chloride (PbCl 2 , 99%) was purchased from Acros Organics. EJ-290 Plastic Scintillator Casting Resin was purchased from Eljen Technology (Sweetwater, TX, USA).
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3

Perovskite Precursor Compounds Synthesis

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The
following materials were used: methylammonium
iodide (Sigma, 98%), formamidinium iodide (Sigma, 98%), formamidinium
bromide (Sigma, 98%), formamidinium chloride (Sigma, 97%), CsI (Fischer,
99.9%), CsBr (Fischer, 99.9%), CsCl (Acros, 99.99%), SnI2 (Sigma, 99.999%), SnBr2 (Sigma), SnCl2 (Sigma,
98%), SnI4 (Sigma, 99.999%), and SnBr4 (Sigma,
99%).
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