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New Approach toward Dual-Emissive Organic–Inorganic Hybrids by Integrating Mn(II) and Cu(I) Emission Centers in Ionic Crystals

Alexander V. Artem’ev, Maria P. Davydova, Alexey S. Berezin, Denis G. Samsonenko⧫, Irina Yu. Bagryanskaya, Valery K. Brel, Xiuze Hei, Konstantin A. Brylev, Оleg I. Аrtyushin, Лев Е. Зеленков, Ivan I. Shishkin, Jing Li

2022ACS Applied Materials & Interfaces32 citationsDOI

Abstract

modules. The structural diversity, enhanced robustness, and up to 100% luminescence quantum yield make the designed materials promising phosphors for lighting and sensing applications.

Topics & Concepts

Materials sciencePhosphorescencePhosphorLuminescenceChromaticityIonic bondingIonManganeseQuantum yieldHybrid materialOptoelectronicsNanotechnologyFluorescenceOpticsPhysicsMetallurgyQuantum mechanicsNanocluster Synthesis and ApplicationsLuminescence and Fluorescent MaterialsLuminescence Properties of Advanced Materials
New Approach toward Dual-Emissive Organic–Inorganic Hybrids by Integrating Mn(II) and Cu(I) Emission Centers in Ionic Crystals | Litcius