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Title: Red shift properties, crystal field theory and nephelauxetic effect on Mn⁴⁺-doped SrMgAl₁₀₋-ᵧGaᵧO₁₇ red phosphor for plant growth LED light
Authors: Gu, S
Xia, M
Zhou, C
Kong, Z
Molokeev, MS
Liu, L
Wong, WY 
Zhou, Z
Issue Date: 15-Sep-2020
Source: Chemical engineering journal, 15 Sept. 2020, v. 396, 125208
Abstract: The discovery of novel Mn⁴⁺-doped oxide red phosphor with suitable spectrum for plant growth is a hot issue in the recent years due to the characteristic red photoluminescence of ²Eᵍ → ⁴A₂ transition in Mn⁴⁺ ions. Generally, the emission position of Mn⁴⁺ is hard to tune because of specific crystal field in most phosphors. In this work, tunable luminescence property with obvious red shift in the spectra is observed in the Mn⁴⁺-doped SrMgAl₁₀₋-ᵧGaᵧO₁₇ red phosphor via simple substitution of Ga³⁺ for Al³⁺, and crystal field theory and nephelauxetic effect are employed to explain this phenomenon. Meanwhile, the Ga³⁺ dopant changes the shape of the spectra because Ga³⁺ dopant guides the replacement site of M⁴⁺ and changes the luminescence center. Improved emission intensity is obtained because appropriate Ga³⁺ doping leads to larger band gap and reduces non-radiative transitions. Phosphor-converted LED (pc-LED) devices fabricated with blue chip (470 nm) and the as-obtained SrMgAl₁₀₋-ᵧGaᵧO₁₇ :1.0%Mn⁴⁺ phosphors emit bright blue and red light, which fit the absorption regions of plant pigments well, thus SrMgAl₁₀₋-ᵧGaᵧO₁₇:Mn⁴⁺ phosphor can be a candidate for plant growth LED light.
Keywords: Crystal field theory
Nephelauxetic effect
Plant growth LED light
Red shift
SrMgAl10-yGayO17: Mn4+
Publisher: Elsevier
Journal: Chemical engineering journal 
ISSN: 1385-8947
DOI: 10.1016/j.cej.2020.125208
Rights: © 2020 Elsevier B.V. All rights reserved.
©2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Gu, S., Xia, M., Zhou, C., Kong, Z., Molokeev, M. S., Liu, L., ... & Zhou, Z. (2020). Red shift properties, crystal field theory and nephelauxetic effect on Mn4+-doped SrMgAl10-yGayO17 red phosphor for plant growth LED light. Chemical Engineering Journal, 396, 125208 is available at https://doi.org/10.1016/j.cej.2020.125208.
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