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Site occupancy and photoluminescence properties of Eu3+-activated Ba2ZnB2O6 phosphor

机译:Eu3 +激活的Ba2ZnB2O6荧光粉的位点占据和光致发光特性

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A series of Ba2ZnB2O6:Eu3+ phosphors with a red-emitting band centered at 616 nm were prepared by traditional high temperature solid-state reaction methods. The site-preferred occupancy of Eu3+ in Ba2ZnB2O6 and luminescence properties of Ba2ZnB2O6:Eu3+ were studied combined with X-ray diffraction (XRD), photoluminescence excitation (PLE) spectra and emission (PL) spectra as well as temperature-dependent PL and decay curves. The Rietveld refinements indicate that the Eu3+ ions prefer to occupy Zn (1) (4a) and Zn (2) (4a) sites simultaneously. The PL intensity is improved with increasing Eu3+ content and the optimal dopant content is 0.05. The temperature-dependent PL spectra indicate that the emission intensity decreases with the temperature because of the enhancement of the non-radiative transition. The PL emission intensities of Ba2ZnB2O6:0.05Eu(3+) phosphors with Li+, Na+ and K+ as charge compensators are enhanced significantly, and the phosphor compensated by Li+ ions emits the strongest emission. The Commission Internationale de I'Eclairage (CIE) color coordinates of Ba2ZnB2O6:0.05Eu(3+) are very close to the CIE of standard red light.
机译:通过传统的高温固态反应方法,制备了一系列以红色发光带为中心的Ba2ZnB2O6:Eu3 +荧光粉,其中心波长为616 nm。结合X射线衍射(XRD),光致发光(PLE)光谱和发射光谱(PL)以及随温度变化的PL和衰变曲线,研究了Ba3ZnB2O6中Eu3 +的位置优先占据和Ba2ZnB2O6:Eu3 +的发光特性。 Rietveld的改进表明Eu3 +离子倾向于同时占据Zn(1)(4a)和Zn(2)(4a)位置。随着Eu3 +含量的增加,PL强度得到改善,最佳掺杂剂含量为0.05。与温度有关的PL光谱表明,由于非辐射跃迁的增强,发射强度随温度降低。以Li +,Na +和K +作为电荷补偿剂的Ba2ZnB2O6:0.05Eu(3+)磷光体的PL发射强度显着提高,并且由Li +离子补偿的磷光体发射的光最强。 Ba2ZnB2O6:0.05Eu(3+)的国际照明委员会(CIE)颜色坐标非常接近标准红光的CIE。

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