首页> 外文期刊>Physica, B. Condensed Matter >Optical properties of Eu3+ & Tb3+ ions doped alkali oxide (Li2O/ Na2O/ K2O) modified boro phosphate glasses for red, green lasers and display device applications
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Optical properties of Eu3+ & Tb3+ ions doped alkali oxide (Li2O/ Na2O/ K2O) modified boro phosphate glasses for red, green lasers and display device applications

机译:Eu3 +&Tb3 +离子的光学性质掺杂碱氧化物(Li2O / Na 2 O / K2O)改性硼磷脂,用于红色,绿色激光器和显示装置应用

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In this article we report on alkali oxide modified borophosphate glasses doped with Eu3+ and Tb3+ ions, with the chemical composition of 69.5 B2O3 + 10P(2)O(5) + 10CaF(2) + 5 Li2O+ 5ZnO+ R+ 0.5 Eu2O3 [where R = 5 (LiO2/Na2O/K2O)] have been prepared by conventional melt quenching technique, and the spectroscopic properties of the prepared glasses have been studied by XRD, Optical absorption, excitation and emission spectral analysis. XRD spectrum of the glasses have shown the amorphous nature of the glasses. The red emission corresponding to D-5(0) -> F-7(2) (613 nm) transition was observed under the excitation of 394 nm wavelength, corresponding to Eu3+ ions, for all the prepared glasses. For Eu3+ ion doped glasses, emission bands were observed, such as; D-5(1) -> F-7(1) (538 nm), D-5(0) -> F-7(0) (580 nm), D-5(0) -> F-7(1) (592 nm), D-5(0) -> F-7(2) (613 nm), D-5(0) -> F-7(3) (613 nm) and D-5(0) -> F-7(4) (702 nm) are identified. In the case of Tb3+ ion doped glasses, four emission lines were observed, such as D-5(4) -> (F-7(6), F-7(5), F-7(4)), which are located at 489 nm, 545 nm and 585 nm, respectively, after the samples were excited with 376 nm ultraviolet source. The green emission corresponding to D-5(4) -> F-7(5) (543 nm) transition was observed under excitation wavelength 376 nm of the Tb3+ ions for all the prepared glasses. For all these emission bands, the decay curves were recorded to evaluate the emission life times. The mechanism underlying the observed emission from the glasses was explained in terms of energy levels.
机译:在本文中,我们向掺杂有Eu3 +和Tb3 +离子的碱基氧化物改性的硼磷酸玻璃报告,其中化学组合物为69.5 b2O3 + 10p(2)O(5)+ 10COF(2)+ 5,Li 2 O + 5ZnO + R + 0.5 Eu2O3 [其中R =已经通过常规熔体淬火技术制备了5(LiO 2 / Na 2 O / K2O),并通过XRD,光学吸收,激发和发射光谱分析研究了制备的玻璃的光谱性能。眼镜的XRD光谱显示了眼镜的无定形性质。对应于D-5(0) - > F-7(2)(613nm)转变的红色发射,在394nm波长的激发下观察到所有制备的玻璃的Eu3 +离子的激发。对于EU3 +离子掺杂眼镜,观察到发射带,例如; D-5(1) - > F-7(1)(538nm),D-5(0) - > F-7(0)(580nm),D-5(0) - > F-7( 1)(592nm),D-5(0) - > F-7(2)(613nm),D-5(0) - > F-7(3)(613nm)和D-5(0 ) - 鉴定> F-7(4)(402纳米)。在TB3 +离子掺杂眼镜的情况下,观察到四条发射线,例如D-5(4) - >(F-7(6),F-7(5),F-7(4))是在用376nm紫外源激发样品后,分别位于489nm,545nm和585nm后。对应于D-5(4) - > F-7(5)(543nm)转变的绿色发射在TB3 +离子的激发波长376nm下,用于所有制备的玻璃。对于所有这些发射带,记录衰减曲线以评估发射寿命时间。在能量水平方面解释了玻璃所观察到的玻璃的发射的机制。

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