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◆ Journal of the American Ceramic Society2026-06-01· Phosphor

Thermodynamic Stabilization and Cr <sup>3+</sup> Luminescence Tuning in Gd <sub>3</sub> Al <sub>5</sub> O <sub>12</sub> Garnet Phosphor via Multi‐Cation Incorporation

Qinghong Meng, Jiaming Yuan, Zhijun Xu, Xiangming Li, Wanjun Yu, Rong Feng, Xi Zhang, Ji‐Guang Li

原始摘要(英文原文)· Original abstract
ABSTRACT To explore broadband near‐infrared (NIR) emission phosphor based on the thermodynamic metastable Gd 3 Al 5 O 12 garnet, a new strategy of Ca 2+ ‐Sn 4+ pairs substituting for Gd 3+ ‐Al 3+ was utilized to stabilize the lattice, followed by using Ga 3+ doping to tune the crystal structure, Cr 3+ local coordination environment, and luminescence. Then the novel Gd 1.02 Ca 1.98 Al 3− y Ga y Sn 1.98 O 12 :0.02Cr 3+ (GCAGSO:Cr) phosphors were successfully devised and fabricated, and systematic research revealed that increased Ga 3+ incorporation induced an enhanced degree of the [(Sn,Ga,Cr)O 6 ] octahedron distortion, weakened the magnitude of the crystal field Cr 3+ experienced, and red‐shifted/broadened the emission band. The optimal phosphor exhibits efficient broadband NIR emission and outstanding thermal stability ( I 423K = 84.3%, S = 3.52, Δ E a = 0.31 eV), with a maximum center at ∼782 nm, a full‐width at half‐maximum of ∼138 nm, and internal/external quantum efficiencies of ∼80.3%/24.2%. The constructed pc‐NIR‐LED adopting this optimal phosphor manifests desirable luminous performance (output power ∼19.05 mW, efficiency ∼8.24%), demonstrating promise for practical applications in non‐invasive biological imaging, non‐destructive inspection, and night vision.
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Thermodynamic Stabilization and Cr <sup>3+</sup> Luminescence Tuning in Gd <sub>3</sub> Al <sub>5</sub> O <sub>12</sub> Garnet Phosphor via Multi‐Cation Incorporation — 科研速览 Science Skim