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2 protocols using yttrium acetate

1

Synthesis and Characterization of Perovskite Nanocrystals

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Cesium carbonate (Cs2CO3, 99.9%), lead bromide (PbBr2, 99.9%), lead chloride (PbCl2, 99.9%), lead iodide (PbI2, 99.9%), yttrium acetate ((CH3CO2)3Y·xH2O, 99.9%), ytterbium acetate ((CH3CO2)3Yb·4H2O, 99.9%), thulium(III) acetate ((CH3CO2)3Tm·xH2O, 99.9%), sodium hydroxide (NaOH, 99%), ammonium fluoride (NH4F, 98%), octadecene (ODE, 95%), oleic acid (OA, 90%), oleylamine (OAm, 98%), oleylamine chloride (OAmCl, 99%), oleylamine iodide (OAmI, 99%), cyclohexane (99.9%), and toluene (99.9%) were purchased from Sigma-Aldrich and used as received without further purification.
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2

Fabrication of OTS-Coated Substrates

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Ethanol (90 %), octadecyl trichlorosilane (OTS, 98.9 %), oleic acid (90 %), 1-octanol (95 %) and decane (99 %) were purchased from Fisher Scientific (Canada). While iron (III) chloride (97 %), copper acetate (98 %), yttrium acetate (99 %) and zinc oxide (98 %) was purchased from Sigma-Aldrich (Canada). Water was obtained from a MillI-Q water purification system (MA, USA). OTS-coated cover glass (Fisher scientific) and silicon wafer (University wafer, USA) were used as the substrate. The coating of OTS was prepared by following the protocol reported in the literature. [40] .
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