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◆ Chemistry - An Asian Journal2026-05-01· Phosphor

Unraveling the Lattice Dynamics and Inherent Emission of NaGdMgTeO <sub>6</sub> Double Perovskite Phosphor

Pooja Kaithrikkovil Varriam, Subodh Ganesanpotti

原始摘要(英文原文)· Original abstract
ABSTRACT Inherently emitting phosphors are gaining significant attention due to their minimal reabsorption, broad emission profiles, high efficiency, and low cost. In the present work, the inherent emission of the double perovskite tellurate NaGdMgTeO 6 is studied for the first time, and the underlying mechanism has been explored in detail. Under 334 nm excitation, the phosphor exhibits an unusual broad NIR emission spanning from 800 to 1200 nm, with a maximum at 948 nm. XPS analysis confirms the presence of Te 4+ ions in the host, owing to the incomplete oxidation to Te 6+ , as well as the formation of oxygen vacancies. Upon annealing the phosphor under O 2 atmosphere, a reduction in the content of Te 4+ and oxygen vacancies has been observed, which results in a decrease in the overall emission intensity. Temperature‐dependent emission spectra reveal that the phosphor exhibits better thermal stability at low temperatures, but undergoes rapid thermal quenching at high temperatures, with an activation energy of 0.16 eV, obtained from the Arrhenius plot. Temperature‐dependent Raman analysis indicates a decrease in the phonon lifetime from 49 ps (303 K) to 37 ps (773 K), resulting in an increase in the number of phonon decay channels, contributing to observed thermal quenching.
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Unraveling the Lattice Dynamics and Inherent Emission of NaGdMgTeO <sub>6</sub> Double Perovskite Phosphor — 科研速览 Science Skim