Issue 15, 2023

Flux induced highly efficient and stable phosphor Sr2ScSbO6:Mn4+ for plant growth lighting

Abstract

Anti-seasonal vegetables and greenhouse planting patterns are being rapidly promoted, and the domestic market demand for agricultural lighting has increased significantly. Far-red light required for plant growth urgently requires development. Here, a novel Mn4+-doped red phosphor Sr2ScSbO6 is demonstrated, emitting from 600 to 800 nm with a peak at 700 nm. The phosphor Sr2ScSbO6:Mn4+ obtained excellent thermal stability by adding flux; that is, the comprehensive intensity of the emission spectrum at 423 K was still 100.87% of that at room temperature. In addition, the introduction of SrF2 increases the internal and external quantum efficiency from 78.41%/41.32% to 86.68%/53.13%. Finally, LED devices were prepared using Sr2ScSbO6:Mn4+ phosphors for plant lighting experiments, and the height of the vegetables cultured under our far-red LEDs was higher. The results indicate that the far-red phosphor Sr2ScSbO6:Mn4+ has wide application prospects in the field of indoor plant cultivation.

Graphical abstract: Flux induced highly efficient and stable phosphor Sr2ScSbO6:Mn4+ for plant growth lighting

Supplementary files

Article information

Article type
Paper
Submitted
06 Dec 2022
Accepted
12 Mar 2023
First published
13 Mar 2023

J. Mater. Chem. C, 2023,11, 5064-5072

Flux induced highly efficient and stable phosphor Sr2ScSbO6:Mn4+ for plant growth lighting

X. Meng, Z. Wang, Z. Yan, D. Guo, M. Liu, J. Gong, X. Feng, T. Zhang, X. Li and P. Li, J. Mater. Chem. C, 2023, 11, 5064 DOI: 10.1039/D2TC05190G

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