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Updated: Feb 24, 2026

Low-energy Cathodoluminescence for OxyNitride Phosphors
Published on: November 15, 2016
Regulating red-shifted phosphorescence of carbon dots via introducing magnesium chloride
Yibin Long1, Haoda Zhang1, Yongjin Chen2
1College of Pharmaceutical Sciences, Southwest University Chongqing 400715 P. R. China ming4444@swu.edu.cn.
Abstract:
Achieving the multicolor phosphorescence of carbon dots (CDs), particularly with controllable wavelengths, remains a challenging yet desirable goal. Herein, we designed and prepared phosphorescent CDs (CDs@Al2O3 and CDs@MgAl2O4) using an in situ synthesis strategy. The oxygen vacancies in CDs stabilized the triplet excitons, thus enabling the long-lived and strong phosphorescence of these CDs. Importantly, CDs@MgAl2O4 exhibited obviously red-shifted phosphorescence (552 nm) compared to CDs@Al2O3 (525 nm) owing to increased conjugation and a narrowed bandgap, with the narrowed gap derived from coordination between magnesium and C[double bond, length as m-dash]O. These CDs showed excitation-dependent phosphorescence, which was tunable from cyan to red by varying excitation wavelengths. Additionally, we synthesized a series of phosphorescent CDs by employing different carbon sources, among which the magnesium-doped CDs consistently displayed red-shifted phosphorescence, thus proving the universality of this strategy and providing an innovative approach for regulating the phosphorescence of CDs.
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