Spatially Resolved Anion Diffusion and Tunable Waveguides in Bismuth Halide Perovskites

Nano Lett. 2024 May 1;24(17):5182-5188. doi: 10.1021/acs.nanolett.4c00327. Epub 2024 Apr 17.

Abstract

Bismuth halide perovskites are widely regarded as nontoxic alternatives to lead halide perovskites for optoelectronics and solar energy harvesting applications. With a tailorable composition and intriguing optical properties, bismuth halide perovskites are also promising candidates for tunable photonic devices. However, robust control of the anion composition in bismuth halide perovskites remains elusive. Here, we established chemical vapor deposition and anion exchange protocols to synthesize bismuth halide perovskite nanoflakes with controlled dimensions and variable compositions. In particular, we demonstrated the gradient bromide distribution by controlling the anion exchange and diffusion processes, which is spatially resolved by time-of-flight secondary ion mass spectrometry. Moreover, the optical waveguiding properties of bismuth halide perovskites can be modulated by flake thicknesses and anion compositions. With a unique gradient anion distribution and controllable optical properties, bismuth halide perovskites provide new possibilities for applications in optoelectronic devices and integrated photonics.

Keywords: Lead-free metal halide perovskites; anion diffusivity; anion exchange; tunable optics; ultrathin crystals; waveguide.