Abstract
Halide perovskites have attracted attention for light-to-electricity conversion in solar cells due to their favorable optoelectronic properties. In particular, the replacement of the A cation by an isovalent molecule has proven highly successful. We explore the substitution of the X anion, producing polyanion perovskites based on hexafluorophosphate and tetrafluoroborate. Starting from CsPbI3, the effect of partial and complete substitution is investigated using relativistic electronic structure calculations. BF4- results in a larger perturbation to the electronic structure than PF6-; however, both localise the band edge states, and the end member compounds are predicted to be wide band gap dielectrics.
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CITATION STYLE
Hendon, C. H., Yang, R. X., Burton, L. A., & Walsh, A. (2015). Assessment of polyanion (BF4- and PF6-) substitutions in hybrid halide perovskites. Journal of Materials Chemistry A, 3(17), 9067–9070. https://doi.org/10.1039/c4ta05284f
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