AI Article Synopsis

  • The study investigates halide anion-exchange reactions in cesium lead halide (CsPbX) nanorods, aiming for complete anion exchange while maintaining their unique one-dimensional shape and varied crystal structures.
  • It was discovered that alkyl amines can harm the stability of CsPbBr nanorods by causing etching and transforming them into less desirable forms.
  • The research suggests methods to preserve metastable states in perovskite nanocrystals during these reactions, which could help optimize their properties for applications in optoelectronics.*

Article Abstract

We examine halide anion-exchange reactions on CsPbX nanorods (NRs), and we identify reaction conditions that provide complete anion exchange while retaining both the highly quantum-confined 1-D morphology and metastable crystal lattice configurations that span a range between tetragonal structures and thermodynamically preferred orthorhombic structures. We find that the chemical stability of CsPbBr NRs is degraded by the presence of alkyl amines that etch CsPbBr and result in the formation of CsPbBr and 2-D bromoplumbates. Our study outlines strategies for maintaining metastable states of the soft lattices of perovskite nanocrystals undergoing exchange reactions, despite the thermodynamic driving force toward more stable lattice configurations during this disruptive chemical transformation. These strategies can be used to fine-tune the band gap of LHP-based nanostructures while preserving structure-property relationships that are contingent on metastable shapes and crystal configurations, aiding optoelectronic applications of these materials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10862380PMC
http://dx.doi.org/10.1021/acsanm.3c05024DOI Listing

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