DOE OSTI · 3022856
Stabilizing Ultrathin CsPbBr 3 Nanoplatelet Films for Deterministic Strong Light-Matter Coupling
Abstract
While the excitons in perovskite nanomaterials possess interesting properties central to their use in optoelectronic technologies, their instability limits real world applicability. In this study, we describe a method to stabilize the structures of cesium lead bromide (CsPbBr 3 ) nanoplatelets (NPLs) in spin-casted films. We apply this method to design, fabricate, and characterize exciton cavity polaritons formed from these nanomaterials. These studies show that we can form exciton cavity polaritons from CsPbBr 3 in precisely designed Fabry−Perot microresonators and suggest that the structures of these materials can be stabilized toward their use in other solution-processed optoelectronic devices.
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Odewale, Elizabeth O. [Wayne State Univ., Detroit, MI (United States)] (ORCID:0009000523451693), Boateng, Isaac D. [Wayne State Univ., Detroit, MI (United States)], Rury, Aaron S. [Wayne State Univ., Detroit, MI (United States)] (ORCID:0000000218361424). 2026-02-25. Stabilizing Ultrathin CsPbBr 3 Nanoplatelet Films for Deterministic Strong Light-Matter Coupling. https://doi.org/10.1021/acs.jpclett.5c03989
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