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用于植物种植LED的对光敏色素P具有优异响应性的新型SrLaAlO:Mn深红色发射荧光粉:合成、光致发光性能及热稳定性

Novel SrLaAlO:Mn deep-red emitting phosphors with excellent responsiveness to phytochrome P for plant cultivation LEDs: synthesis, photoluminescence properties, and thermal stability.

作者信息

Sankarasubramanian K, Devakumar Balaji, Annadurai G, Sun Liangling, Zeng Yu-Jia, Huang Xiaoyong

机构信息

Key Lab of Advanced Transducers and Intelligent Control System, Ministry of Education and Shanxi Province, College of Physics and Optoelectronics, Taiyuan University of Technology Taiyuan 030024 P. R. China

Shenzhen Key Laboratory of Laser Engineering, College of Optoelectronic Engineering, Shenzhen University Shenzhen 518060 P. R. China

出版信息

RSC Adv. 2018 Aug 28;8(53):30223-30229. doi: 10.1039/c8ra06356g. eCollection 2018 Aug 24.

Abstract

Herein, novel rare-earth-free Mn-doped SrLaAlO deep-red emitting phosphors were successfully synthesized a traditional solid-state reaction method. The crystal structure and phase purity of the as-prepared samples were confirmed by XRD Rietveld refinement. Photoluminescence properties of SrLaAlO:Mn phosphors were examined in detail using photoluminescence spectra, decay lifetimes, temperature-dependent emission spectra and internal quantum efficiency measurements. The excitation spectrum obtained by monitoring at 730 nm contained two excitation bands centered at 364 and 520 nm within the range of 200-550 nm due to the Mn-O charge-transfer band and the A → T, T transitions of the Mn ions. Under the 364 nm excitation, the SrLaAlO:Mn phosphors exhibited an intense deep-red emission band in 610-790 nm wavelength range peaking at 730 nm, which was assigned to the E → A transition of Mn ions. The deep red emission showed excellent responsiveness to phytochrome P, revealing that the SrLaAlO:0.4% Mn phosphors possessed a possible application in deep-red light-emitting diodes (LEDs) for plant cultivation. The optimal doping concentration of Mn ions was found to be 0.4 mol%. The critical distance for energy transfer among Mn ions was determined to be 5.86 Å and the concentration quenching mechanism was confirmed to be the electric dipole-dipole interaction. In addition, the Commission International de I'Eclairage (CIE) colour coordinates of the SrLaAlO:0.4% Mn phosphors (0.734, 0.266) were located in the deep red region and the corresponding internal quantum efficiency was measured to be about 29%. The above results confirmed that the as-prepared SrLaAlO:0.4% Mn deep red emitting phosphors might be a potential candidate for plant cultivation LEDs.

摘要

在此,通过传统的固态反应法成功合成了新型无稀土的Mn掺杂SrLaAlO深红色发光荧光粉。通过XRD全谱拟合确定了所制备样品的晶体结构和相纯度。利用光致发光光谱、衰减寿命、温度依赖发射光谱和内量子效率测量等方法详细研究了SrLaAlO:Mn荧光粉的光致发光性能。在730 nm处监测得到的激发光谱在200 - 550 nm范围内包含两个分别位于364和520 nm处的激发带,这归因于Mn - O电荷转移带以及Mn离子的A→T、T跃迁。在364 nm激发下,SrLaAlO:Mn荧光粉在610 - 790 nm波长范围内呈现出一个强烈的深红色发射带,峰值位于730 nm,这归因于Mn离子的E→A跃迁。该深红色发射对光敏色素P表现出优异的响应性,表明SrLaAlO:0.4% Mn荧光粉在用于植物栽培的深红色发光二极管(LED)中具有潜在应用。发现Mn离子的最佳掺杂浓度为0.4 mol%。确定Mn离子间能量转移的临界距离为5.86 Å,并证实浓度猝灭机制为电偶极 - 偶极相互作用。此外,SrLaAlO:0.4% Mn荧光粉的国际照明委员会(CIE)色坐标(0.734, 0.266)位于深红色区域,相应的内量子效率测量值约为29%。上述结果证实,所制备的SrLaAlO:0.4% Mn深红色发光荧光粉可能是植物栽培LED的潜在候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b695/9085373/7cae0c79ab31/c8ra06356g-f1.jpg

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