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Updated: Sep 12, 2025

Low-energy Cathodoluminescence for OxyNitride Phosphors
Published on: November 15, 2016
Chromium Ion Pairs Induce Highly Efficient and Thermostable Broadband NIR Phosphor for Plant Lighting and Night
Cheng Zhou1,2, Junxi Wang1,2, Pingzhi Zhang1
1School of Chemistry and Materials Science, Hunan Agricultural University, Changsha 410128, P. R. China.
Abstract:
Near-infrared (NIR) light has a high application value in various fields due to its spectral characteristics. Typically, the broadband NIR emission of Cr3+ is based on the transition of 4T2→4A2, while the 2E level emits narrowband emission. This work discovered broadband NIR emission from the [4A2, 4T2] coupling excited state energy level in the spinel structure. The dense and adjacent Al1O6 as the occupied sites of Cr3+ provides a structural basis for the exchange coupling effect under high Cr3+ concentration, as confirmed by the analysis of site occupancy, formation energy, bond valence sum, and effective coordination number. Spectral information and EPR signals indicate that the [4A2, 4T2] coupling excited state in the emission spectrum corresponds to the downward shift of the T2 energy level caused by the Cr3+-Cr3+ exchange coupling interaction in the strong crystal field of LAO:Cr3+. The internal and external quantum efficiencies of LAO:0.15Cr3+ are 80.6% and 30.3%, respectively. The luminescence intensity at 370 and 423 K is approximately 92% and 85% respectively of that at room temperature. The excellent luminescence thermal stability is attributed to the activation energy of 0.21 eV and the Huang-Rhys factor S = 3.95. Finally, the material was fabricated into pc-LEDs and its applications in night vision and plant lighting were explored.
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