Ca2+ enhanced far-red emission performance and efficiency of SrGd2Al2O7:Mn4+ phosphor for the potential application in plant growth lighting

Author:

Yu Yi12ORCID,Shao Kai12,Niu Chonghui12,Dan Mingjie12,Wang Zhibin1,Wang Yingying1,Chen Jie1,Luo Jiani1,Liu Shiying1,Xie Zhi3ORCID

Affiliation:

1. School of Physics and Electronic Information, Gannan Normal University 1 , Ganzhou 341000, China

2. Advanced Energy Storage and Photoelectric Materials Research Center, Gannan Normal University 2 , Ganzhou 341000, China

3. College of Mechanical and Electronic Engineering, Fujian Agriculture and Forestry University 3 , Fuzhou 350002, China

Abstract

Mn-based phosphors with the wavelength of 700–750 nm are an important category of far-red phosphors that have promising potential in the application of plant lighting, and the higher ability of the far-red light emitting of the phosphors is beneficial to plant growth. Herein, a series of Mn4+- and Mn4+/Ca2+-doped double perovskite SrGd2Al2O7 red-emitting phosphors with wavelengths centered at about 709 nm were successfully synthesized by means of a traditional high-temperature solid-state method. First-principles calculations were conducted to explore the intrinsic electronic structure of SrGd2Al2O7 for a better understanding of the luminescence behavior in this material. Extensive analysis demonstrates that the introduction of Ca2+ ions into the SrGd2Al2O7:Mn4+ phosphor has significantly boosted the emission intensity, internal quantum efficiency, and thermal stability by 170%, 173.4%, and 113.7%, respectively, which are superior to those of most other Mn4+-based far-red phosphors. The mechanism of the concentration quench effect and the positive effect of co-doping Ca2+ ions in the phosphor were extensively explored. All studies suggest that the SrGd2Al2O7:0.1%Mn4+, 11%Ca2+ phosphor is a novel phosphor that can be used to effectively promote the growth of plants and regulate the flowering cycle. Therefore, promising applications can be anticipated from this new phosphor.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangxi Province

Natural Science Foundation of Fujian Province

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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