The photoluminescence studies of Gd3+/Tb3+ co-doped xerogels and nano-glass-ceramics dedicated for green-emitting devices

Q2 Engineering
Natalia Pawlik , Tomasz Goryczka , Barbara Szpikowska-Sroka , Wojciech A. Pisarski
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引用次数: 0

Abstract

In this work, we reported the results of photoluminescent and structural investigations of Gd3+/Tb3+ co-doped silicate xerogels as well as derivative SiO2-LaF3 nano-glass-ceramics. The molar ratio of appropriate acetates used during the synthesis, i.e., La(AcO)3:Gd(AcO)3:Tb(AcO)3 was fixed to x:(0.95-x):0.05. Based on XRD measurements, the crystallization of hexagonal LaF3 nanophase was verified without any admixture of GdF3 phase, even for samples with La3+:Gd3+ molar ratio ≤1. The optical characterization of fabricated Gd3+/Tb3+ co-doped sol-gel materials involved the registration and analysis of photoluminescence excitation (PLE) and emission spectra (PL), as well as the decay curves for the 6P7/2 (Gd3+) and the 5D4 (Tb3+) excited levels. Upon excitation at λex = 275 nm wavelength, the fabricated sol-gel samples revealed the series of emission lines assigned to the electronic transitions from both dopants, i.e., Gd3+ and Tb3+, indicating apparently the occurrence of Gd3+/Tb3+ energy transfer process (ET). The photoluminescence measurements comprehensibly proved the competitiveness between Gd3+ and Tb3+ ions to be entered into LaF3 fluoride nanocrystal lattice, formed during annealing of as-prepared xerogels. Based on the recorded PL spectra for fabricated sol-gel samples, some chromatic parameters were calculated, i.e., chromaticity coordinates (CIE), correlated color temperatures (CCT), and color purities (CP). The prepared Gd3+,Tb3+ co-doped samples are able to emit green light with CCT values in a range from 5967 K to 6291 K, and high CP reached 70 %, which predispose them for use as efficient constituents for developing green-emitting devices.

绿色发光器件专用的 Gd3+/Tb3+ 共掺杂异凝胶和纳米玻璃陶瓷的光致发光研究
在这项工作中,我们报告了对 Gd3+/Tb3+ 共掺硅酸盐异凝胶以及二氧化硅-LaF3 纳米玻璃陶瓷衍生物进行光致发光和结构研究的结果。合成过程中使用的适当醋酸盐摩尔比,即 La(AcO)3:Gd(AcO)3:Tb(AcO)3 固定为 x:(0.95-x):0.05。根据 XRD 测量结果,即使在 La3+:Gd3+ 摩尔比≤1 的样品中,也验证了六方 LaF3 纳米相的结晶,没有掺杂任何 GdF3 相。对制备的 Gd3+/Tb3+ 共掺溶胶凝胶材料进行的光学表征包括登记和分析光致发光激发(PLE)和发射光谱(PL),以及 6P7/2(Gd3+)和 5D4(Tb3+)激发水平的衰减曲线。在波长为 λex = 275 nm 的激发下,所制备的溶胶凝胶样品显示出一系列发射线,这些发射线分别来自两种掺杂剂(即 Gd3+和 Tb3+)的电子跃迁,这显然表明发生了 Gd3+/Tb3+能量转移过程(ET)。光致发光测量结果清楚地证明了 Gd3+ 和 Tb3+ 离子进入 LaF3 氟化物纳米晶格的竞争性,这种竞争性是在所制备的 xerogels 的退火过程中形成的。根据记录的溶胶-凝胶样品的聚光光谱,计算了一些色度参数,即色度坐标(CIE)、相关色温(CCT)和色纯度(CP)。制备的 Gd3+、Tb3+ 共掺样品能够发射绿光,其 CCT 值范围在 5967 K 到 6291 K 之间,CP 值高达 70%,可用作开发绿色发光器件的有效成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Optical Materials: X
Optical Materials: X Engineering-Electrical and Electronic Engineering
CiteScore
3.30
自引率
0.00%
发文量
73
审稿时长
91 days
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