National Key Laboratory of Photoelectric Technology and Functional Materials in Shaanxi Province, National Photoelectric Technology and Functional Materials & Application of Science and Technology International Cooperation Base, Institute of Photonics & Photon-Technology and Department of Physics, Northwest University , Xi'an 710069, China.
ARC Centre of Excellence for Nanoscale Biophotonics (CNBP), Macquarie University , North Ryde 2109, Australia.
ACS Appl Mater Interfaces. 2016 Aug 17;8(32):20856-64. doi: 10.1021/acsami.6b06102. Epub 2016 Aug 2.
Eu(2+) activated fluorophosphate Ba3GdNa(PO4)3F (BGNPF) with blue and red double-color emitting samples were prepared via a solid-state method in a reductive atmosphere. Their crystal structure and cationic sites were identified in light of X-ray diffraction pattern Rietveld refinement. Three different Ba(2+) sites, coordinated by six O atoms referred to as Ba1, two F and five O atoms as Ba2, and two F and six O atoms as Ba3, were partially substituted by Eu(2+). Photoluminescence emission (PL) and excitation (PLE) spectra of phosphor BGNPF:Eu(2+) along with the lifetimes were characterized at the liquid helium temperature (LHT), which further confirm the existence of three Eu(2+) emitting centers resulting in 436, 480, and 640 nm emission from the 5d → 4f transitions of Eu(2+) in three different Ba(2+) crystallographic sites. These emissions overlap with the absorption spectra of carotenoids and chlorophylls from plants, which could directly promote the photosynthesis. Temperature-dependent PL spectra were used to investigate the thermal stability of phosphor, which indicates that the PL intensity of BGNPF:0.9% Eu(2+) with optimal composition at 150 °C still keeps 60% of its PL intensity at room temperature, in which blue emission has higher thermal-stability than the red emission. Furthermore, the approaching white LED devices have also been manufactured with a 365 nm n-UV LED chip and present phosphor, which make operators more comfortable than that of the plant growth purple emitting LEDs system composed of blue and red light. Results indicate that this phosphor is an attractive dual-responsive candidate phosphor in the application n-UV light-excited white LEDs for plant growth.
Eu(2+) 激活的氟磷酸盐 Ba3GdNa(PO4)3F (BGNPF) 具有蓝、红双色发射的样品,通过还原气氛中的固态法制备。根据 X 射线衍射图谱 Rietveld 精修,确定了它们的晶体结构和阳离子位置。三个不同的 Ba(2+) 位,由六个 O 原子配位,称为 Ba1,两个 F 和五个 O 原子作为 Ba2,两个 F 和六个 O 原子作为 Ba3,被 Eu(2+) 部分取代。在液氦温度(LHT)下,对磷光体 BGNPF:Eu(2+) 的光致发光发射(PL)和激发(PLE)光谱以及寿命进行了表征,进一步证实了存在三个 Eu(2+) 发射中心,导致 5d → 4f 跃迁的 436、480 和 640nm 的 Eu(2+)发射从三个不同的 Ba(2+) 晶格格点。这些发射与植物类胡萝卜素和叶绿素的吸收光谱重叠,可直接促进光合作用。PL 光谱的温度依赖性用于研究磷光体的热稳定性,表明最佳组成的 BGNPF:0.9% Eu(2+) 在 150°C 时的 PL 强度在室温下仍保持其 PL 强度的 60%,其中蓝色发射具有比红色发射更高的热稳定性。此外,还制造了接近白色 LED 器件,其中包括 365nm n-UV LED 芯片和磷光体,这使得操作人员比由蓝光和红光组成的植物生长紫色发射 LED 系统更舒适。结果表明,这种磷光体在应用于植物生长的 n-UV 光激发白色 LED 中是一种有吸引力的双响应候选磷光体。