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Characterization of lithium-magnesium-tellurite doped with erbium and neodymium glass

机译:掺钕钕玻璃锂镁碲铁矿的表征

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摘要

Tellurite glass based on (78-x)TeO2-10Li2O-10MgO-2Nd2O3-xEr2O3, (where x = 0.4 to 2.0 mol %) has successfully been prepared by melt-quenching technique. The colour of glass is found to vary from light violet to dark violet as the Er2O3 content is increased. No definite peaks are found from the X-ray diffraction pattern, which shows that the glass is amorphous in nature. It also found that the densities and the molar volume of the glass increase as the Er2O3 content is increased. The glass transition temperature (Tg), crystallization temperature (Tc), melting temperature (Tm) and the temperature difference (Tc-Tg) are determined by means of Differential Thermal Analysis (DTA). It is found that the Tc, Tg and Tm are in the range of (419-430) oC, (300-345) oC and (885-890) oC respectively. Meanwhile, the vibrational study is conducted using the Infrared spectroscopy in the range of (4000-400) cm–1. Two major absorption peaks are observed around (1600-3600) cm–1, and (900-1200) cm–1 which are due to the stretching mode vibration of OH peak and Te-OH peak respectively. The optical absorption edge is studied using UV-Vis spectroscopy. The result shows that the optical band gap (Eopt) and Urbach Energy (?E) are in the range of (3.038-3.130) eV and (0.334-0.321) eV respectively, depending on the Er2O3 concentration. The refractive index is evaluated using the Sellmeier’s equation and it is found that the value in the visible region is in the range of 1.724-1.781 depending on the Er2O3 content. The emission spectrum is recorded using the photoluminescence spectrometer excited at 582 nm at room temperature. The result shows that the emission spectrum of Er3+ and Nd3+ consist of five emission bands at ~457 nm, ~495 nm, ~556 nm, ~611 nm, and ~ 665 nm which can be assigned as a transition of 4F7/2?4F15/2, 4S3/2?4F15/2, 4G11/2 ? 4I9/2, 4G11/2 ? 4I15/2 and 4G7/2 ? 4I13/2 respectively
机译:通过熔融淬火技术成功地制备了基于(78-x)TeO2-10Li2O-10MgO-2Nd2O3-xEr2O3(其中x = 0.4至2.0 mol%)的碲酸盐玻璃。发现随着Er2O3含量的增加,玻璃的颜色从浅紫色到深紫色不等。从X射线衍射图未发现明确的峰,这表明玻璃本质上是非晶态的。还发现,随着Er2O3含量的增加,玻璃的密度和摩尔体积增加。通过差热分析(​​DTA)确定玻璃化转变温度(Tg),结晶温度(Tc),熔融温度(Tm)和温度差(Tc-Tg)。发现Tc,Tg和Tm分别在(419-430)℃,(300-345)℃和(885-890)℃的范围内。同时,使用(4000-400)cm-1范围内的红外光谱进行了振动研究。在(1600-3600)cm-1和(900-1200)cm-1附近观察到两个主要的吸收峰,分别是由于OH峰和Te-OH峰的拉伸模式振动引起的。使用UV-Vis光谱学研究光吸收边缘。结果表明,取决于Er2O3的浓度,光学带隙(Eopt)和Urbach Energy(ΔE)分别在(3.038-3.130)eV和(0.334-0.321)eV的范围内。使用Sellmeier方程评估折射率,并且根据Er2O3含量,发现可见光区域的值在1.724-1.781的范围内。使用在室温下在582nm激发的光致发光光谱仪记录发射光谱。结果表明,Er3 +和Nd3 +的发射光谱由〜457 nm,〜495 nm,〜556 nm,〜611 nm和〜665 nm的五个发射带组成,可以指定为4F7 / 2?4F15的跃迁。 / 2、4S3 / 2→4F15 / 2、4G11 / 2→ 4I9 / 2、4G11 / 2? 4I15 / 2和4G7 / 2?分别为4I13 / 2

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    Roslan Syaridatul Akmar;

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  • 年度 2013
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