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◆ Journal of fluorescence2026-09-10· Luminescence

Zero-Disturbance Sensitization Strategy for Ultra-High-Efficiency Cr3+ Near-Infrared Phosphors.

Zixuan Gao, Miaocui Lu, Junyu Chen, Shuning Chen, Zuizhi Lu, Yuzhen Zhang

原始摘要(英文原文)· Original abstract
High-efficiency near-infrared (NIR) phosphors are essential for NIR phosphor-converted light-emitting diodes (pc-LEDs). Cr3+-activated garnet-type materials have emerged as promising candidates in this regard. In this work, we propose a minimal-disturbance sensitization strategy to enhance the luminescence performance of Cr3+-doped Ca2Gd2Ga2Ge2O12 (CGGGO) NIR phosphors by introducing Tb3+ as an energy-transfer mediator. The co-doping of Tb3+ has been demonstrated to enhance the emission intensity by 28% under 260 nm excitation and 14% under 450 nm excitation. Concurrently, the internal quantum efficiency (IQE) has been shown to improve from 86.5% to 97%. It is important to note that the emission peak position, spectral shape and fluorescence lifetime remain almost unchanged (peak shift < 1 nm, lifetime variation < 3%), thus confirming the weakly perturbing nature of the sensitization. The present study proposes a dual-pathway energy transfer mechanism, and crystal-field analysis confirms the presence of a moderate crystal field around Cr3+ that is favorable for broadband NIR emission. In conclusion, the fabrication of an NIR pc-LED device employing the optimal co-doped phosphor has been demonstrated to yield stable electroluminescence and excellent night-vision imaging performance. This work develops a high-performance Cr3+-activated NIR phosphor and provides a general strategy for designing efficient luminescent materials via minimally invasive co-doping.
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Zero-Disturbance Sensitization Strategy for Ultra-High-Efficiency Cr3+ Near-Infrared Phosphors. — 科研速览 Science Skim