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Light Emission of Self‐Trapped Excitons in Inorganic Metal Halides for Optoelectronic Applications

Light Emission of Self‐Trapped Excitons in Inorganic Metal Halides for Optoelectronic Applications Self-trapped excitons (STEs) have recently attracted tremendous interest due to their broadband emission, high photoluminescence quantum yield, and self-absorption-free properties, which enable a large range of optoelectronic applications such as lighting, displays, radiation detection, and special sensors. Unlike free excitons, the formation of STEs requires strong coupling between excited state ...

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Light Emission of Self‐Trapped Excitons in Inorganic Metal Halides for Optoelectronic Applications | Awareness Public Knowledge