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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Spectroscopic attributes of Er3+ ions in antimony phosphate glass incorporated with Ag nanoparticles: Judd-Ofelt analysis
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Spectroscopic attributes of Er3+ ions in antimony phosphate glass incorporated with Ag nanoparticles: Judd-Ofelt analysis

机译:掺入Ag纳米颗粒的锑磷酸玻璃中ER3 +离子的光谱属性:Judd-elt分析

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This paper reports the detailed Judd-Ofelt (J-O) analysis of Er3+-doped antimony phosphate glass system incorporated with silver nanoparticles (Ag NPs). Such glass system of composition (59.5-x)Sb2O3-35P(2)O(5) -5MgO-0.5Er(2)O(3)-xAgCl (0 < x < 0.9 mol.%) are synthesized via melt-quenching method. Samples are characterized to determine the influence of Ag NPs concentration dependent modifications in the spectroscopic properties. TEM image manifested the nucleation of Ag NPs of average diameter 4.6 nm and their homogeneous dispersion in the glass matrix. Three surface plasmon resonance (SPR) absorption bands of Ag NPs are probed at 544, 570 and 628 nm. UV-Vis-NIR spectra of glass samples exhibited ten significant absorption peaks of Er3+ ion. Bonding of Er3+ ions with ligands is changed from ionic to covalent character. J-O analysis demonstrated significant increase of Omega(2) with increasing the concentration of Ag NPs which indicated an improvement in the covalency and asymmetry of Er3+ ions environment. Down-conversion photoluminescent (PL) spectra displayed eleven emission bands of Er3+ ions in which the intensities are enhanced significantly (as much as 17.33-fold for sample containing 0.5 mol% of Ag NPs) due to the incorporation of Ag NPs. This intensity enlargement is mainly attributed to the SPR mediated local field effect induced by Ag NPs. The achievement of high stimulated cross-section of this glass system makes them prospective for solid state lasers. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文报道了掺入银纳米颗粒(Ag NPS)的ER3 +掺杂抗磷酸盐玻璃系统的详细judd-ofelt(J-O)分析。通过熔融淬火合成这种组合物(59.5-X)Sb2O3 -35p(2)O(5)-5MgO-0.5(2)O(3)-XAGCL(0 <0.9摩尔%)的这种玻璃系统方法。样品的特征是确定Ag NPS浓度依赖性修饰在光谱性质中的影响。 TEM图像表现出平均直径4.6nm的Ag NP的成核,并在玻璃基质中的均匀分散体。 Ag NPS的三种表面等离子体共振(SPR)吸收带在544,570和628nm处探测。玻璃样品的UV-Vis-Nir光谱表现出ER3 +离子的十个显着吸收峰。 ER3 +离子与配体的键合由离子酸转化为共价特征。 J-O分析表明,随着ER3 +离子环境的共和和不对称性的提高,ω-o的浓度显着增加了ω(2)的浓度。下转换光致发光(PL)光谱显示ER3 +离子的11个发射带,其中由于Ag NPS的掺入,强度显着增强(对于含有0.5摩尔%的Ag NPS的样品,含有0.5mol%的样品)。这种强度扩大主要归因于AG NPS诱导的SPR介导的局部场效应。该玻璃系统的高刺激横截面的成就使其成为固态激光器的前景。 (c)2017年Elsevier B.V.保留所有权利。

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