Glass-crystallized far-red-emitting ceramics for high-power, spectrally matched plant-growth light sources

材料科学 结构材料 陶瓷 光学 光电子学 工程物理 冶金 工程类 物理
作者
Lei Yang,Guojun Zheng,Chuan Liao,Jianrong Qiu,Wenge Xiao
出处
期刊:Journal of Advanced Ceramics [Springer Science+Business Media]
卷期号:14 (10): 9221158-9221158 被引量:13
标识
DOI:10.26599/jac.2025.9221158
摘要

High-brightness far-red light plays a key role in increasing the photosynthetic efficiency and thus crop production in plant factory, as it regulates the entire lifecycle of plants, from seed germination to flowering and fruiting. However, the optical power and efficiency of far-red phosphor-converted light-emitting diodes, an inexpensive solid-state light source, are still limited due to the poor chemical stability and low thermal conductivity of conventional phosphor-silicone composite converters. Here, a series of Cr3+ activated far-red-emitting silicate ceramics with near-unity internal quantum efficiency and near-zero thermal quenching are developed by a simple modified annealing method for full crystallization from the designed glass precursors. Furthermore, the local crystal field of octahedral Cr3+ sites in Y2CaAl4SiO12:Cr3+ is strengthened by cation substitution of Ba2+ for Ca2+ so that the emission spectrum is largely regulated from broad near-infrared band to narrow far-red band well overlapping with the absorption band of the phytochrome Pfr state. Finally, the optimized Y2Ca0.3Ba0.7Al4SiO12:Cr3+ ceramic enables the realization of a high wall-plug efficiency of 27% for the far-red pc-LED and a record output optical power exceeding 2.1 W for the laser-driven far-red light source, highlighting its tremendous potential to serve as all-inorganic color converters for high-power plant-growth light sources. 
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