Methods of growing large crystals of all-inorganic and hybrid organic-inorganic cesium lead bromide perovskites from solution
Methods of growing large, free-standing single crystals of (FA x Cs 1-x )PbBr 3 perovskites, where 0≤x<1, in solution using tertiary or ternary alkyl ammonium salts, weak organic acids, or a combination thereof are provided. By including the additives in a crystallization solution with perovskite precursors, larger single crystals can be grown by slow evaporation or inverse temperature crystallization than would possible in the absence of the additives under the same growth conditions.
1 . A method for growing a perovskite single-crystal having the formula (FA x Cs 1-x )PbBr 3 , where 0≤x<1, the method comprising:
forming a crystallization solution comprising:
one or more (FA x Cs 1-x )PbBr 3 perovskite precursors; and
one or more alkyl ammonium salts having the formula R (4-x) H x NX, where the Rs are alkyl groups selected from methyl groups, ethyl groups, propyl groups, butyl groups, and combinations thereof, x has a value of 0 or 1, and X is a halide anion, nitrate anion, acetate anion, perchlorate anion, or sulfate anion dissolved in an organic solvent;
maintaining or ramping up the temperature of the crystallization solution for a time sufficient for the solvent to evaporate and the perovskite precursors to react and form the perovskite single-crystal; and
optionally, transferring the perovskite single-crystal to a fresh batch of crystallization solution and maintaining or ramping up the temperature of the fresh crystallization solution for a time sufficient for the solvent to evaporate and the perovskite precursors to react and increase the size of the perovskite single-crystal;
wherein the perovskite single-crystal has at least one lateral dimension of 6 mm or greater and has a square shape or a rectangular shape with a rectangle aspect ratio of 3:1 or less.
2 . The method of claim 1 , wherein the perovskite single-crystal has at least one lateral dimension of at least 1 cm.
3 . The method of claim 2 , wherein the perovskite single-crystal has the formula CsPbBr 3 .
4 . The method of claim 2 , wherein the perovskite single-crystal has the formula (FA x Cs 1-x )PbBr 3 , where 0<x<1.
5 . The method of claim 1 , wherein the one or more alkyl ammonium salts comprise tetramethyl ammonium bromide.
6 . The method of claim 1 , wherein forming the crystallization solution comprises:
dissolving the (FA x Cs 1-x )PbBr 3 perovskite precursors in the solvent at an elevated temperature to form a precursor solution; and
adding the one or more ammonium salts to the precursor solution at an elevated temperature to form the crystallization solution.
7 . The method of claim 1 , wherein the method does not include the optional step of transferring the perovskite single-crystal to a fresh batch of the crystallization solution and maintaining or ramping up the temperature of the fresh crystallization solution for a time sufficient for the solvent to evaporate and the perovskite precursors to react and increase the size of the perovskite single-crystal.
8 . The method of claim 1 , wherein the method does include the optional step of transferring the perovskite single-crystal to a fresh batch of the crystallization solution and maintaining or ramping up the temperature of the fresh crystallization solution for a time sufficient for the solvent to evaporate and the perovskite precursors to react and increase the size of the perovskite single-crystal.
9 . The method of claim 1 , wherein the perovskite single-crystal has the formula CsPbBr 3 .
10 . The method of claim 1 , wherein the perovskite single-crystal has the formula (FA x Cs 1-x )PbBr 3 , where 0<x<1.