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Physical, structural and optical properties of Sm3+ doped lithium zinc alumino borate glasses

机译:SM3 +掺杂锂锌硼酸锌玻璃的物理,结构和光学性质

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摘要

Sm3+ doped lithium zinc alumino borate glasses with composition 15ZnF(2)-12Li(2)CO(3)-10BaO-8Al(2)O(3) (55-x) B2O3-xSm(2)O(3) where x = 0.1, 0.3, 0.5, 0.7 and 1.1 mol% were prepared by conventional melt quenching technique Their optical, physical, structural, mechanical and luminescence properties are investigated. UV-Vis-NIR absorption spectra showed all possible transitions of samarium ion in this glass matrix. Band gap values for all the glass samples were above 3 eV confirming the insulating nature for the glass. Densities, assessed using the Archimedes rule, were observed to be increasing with increasing samarium concentration. Increase in molar volume with addition of samarium content indicated that the extension of glass network is on account of the increase of number of Non-Bridging Oxygens created by network modifier samarium ions. Scanning Electron Microscopy (SEM) image showed a smooth surface for the synthezied glass. X-Ray Diffraction (XRD) technique was employed to verify the amorphous nature of the glasses. A Makishima and Mackenzie theoretical model gave acceptable approximation of elasticity constants viz. Young's modulus, shear modulus, bulk modulus and Poisson's ratio. The high Vickers hardness values evaluated with mechanical loads of 50, 100, 300, 500, 1000 g force, proved the stability of the glasses. Emission spectra showed a prominent transition (4)G(5/2) -> H-6(7/2) at 598 nm excited with H-6(5/2) -> P-4(3/2) transition at 401 nm. Luminescence quenching effect was observed beyond 0.3 mol% Sm2O3 addition. The chromaticity coordinates (x, y) clustered in the orange-red region, making these Sm3+ doped lithium zinc alumino borate glasses suitable candidate for applications in LEDs and solid-state lasers.
机译:SM3 +掺杂锂锌铝硼酸锌与组合物15ZNF(2)-12LI(2)CO(3)-10BaO-8Al(2)O(3)(55-x)B2O3-xsm(2)O(3)其中x通过常规熔体淬火技术制备了0.1,0.3,0.5,0.7和1.1mol%它们的光学,物理,结构,机械和发光性能。 UV-Vis-Nir吸收光谱显示出该玻璃基质中的所有可能的钐离子过渡。所有玻璃样品的带隙值高于3eV,确认玻璃的绝缘性质。使用Archimedes规则评估的密度被观察到随着钐浓度的增加而增加。添加钐含量的增加表明玻璃网络的延伸是由于网络改性剂钐离子产生的非桥接氧数数量的增加。扫描电子显微镜(SEM)图像为合成玻璃显示出光滑的表面。采用X射线衍射(XRD)技术来验证玻璃的无定形性质。 Makishima和Mackenzie理论模型得到了可接受的弹性常数viz近似。杨氏模量,剪切模量,散装模量和泊松比。使用50,100,300,500,100μg力的机械载荷评估的高维氏硬度值证明了眼镜的稳定性。发射光谱显示出在598nm的突出的过渡(4 )g(5/2) - > H-6(7/2),在598nm激发H-6(5/2) - > p-4(3/2)转变401 nm。观察到发光猝灭效应超过0.3mol%SM2O3加入。在橙红色区域聚集的色度坐标(X,Y),使这些SM3 +掺杂锂锌铝硼酸盐玻璃适用于LED和固态激光器的应用。

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