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Energy Transfer and Spectroscopic Investigation of Dy2O3 Doped Li2O-BaO-GdF3-SiO2 for White Light LED

机译:白光Li2O-BaO-GdF3-SiO2对白光LED的能量转移和光谱研究

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摘要

LGFDy glasses doped with Dy2O3 (0.1, 0.5, 1.0, 1.5 and 2.0 mol %) were synthesised by conventional melt quenching method and various properties are studied by absorption, Judd-Ofelt analysis, photoluminescence, X-ray excited luminescence, decay curve and CIE color chromaticity measurement. Judd-Ofelt parameters (ohm(2), ohm(4) and ohm(6)) are valuated form JO theory in order to estimate the radiative parameters of the Dy3+ ion excited states. For white light emission, Yellow/Blue (Y/B) ratio and CIE color coordinates for glasses under study are measured from the emission spectra. The energy transfer from Gd3+ to Dy3+ ions has been studied by exciting the glass with 275 nm photon. The higher value of sigma (lambda(p)) and beta(R) for F-4(9/2) -> H-6(13/2) transition indicates its more potential use in laser application in yellow region. The correlated color temperature for LGFDy glasses is found to be 4264 K. The decay profile of fluorescent level F-4(9/2) for different concentration of Dy3+ ions in the present glasses changes to non-exponential from single-exponential for higher concentration (>= 0.5 mol %) of Dy3+ ions. Thus the chemical composition of glass and dopant (Dy3+ ions) concentration strongly influence the energy transfer mechanism. The lifetime non-exponential behavior is well fitted to IH-model for S = 6. The quantum efficiency for LBGFDy05 glass is found to be 86%. The systematic investigation signifies the potential of the studied LGFDy glasses for the laser and white light generation application.
机译:通过常规熔体淬火方法合成掺杂有DY2O3(0.1,0.5,1.0,1.5和2.0mol%)的LGFDY眼镜,通过吸收,judd-elt分析,光致发光,X射线激发发光,腐烂曲线和CIE进行各种性能彩色色度测量。 Juad-elt参数(欧姆​​(2),欧姆(4)和欧姆(6))被赋值形成JO理论,以估计DY3 +离子激发态的辐射参数。对于白色发光,从发射光谱测量正在研究的玻璃的黄色/蓝色(Y / B)比率和CIE颜色坐标。通过将具有275nm光子的玻璃激动玻璃来研究来自GD3 +至DY3 +离子的能量转移。 Sigma(Lambda(P))和F-4(9/2) - > H-6(13/2)转变的β(R)的较高值表明其在黄色区域中的激光应用更潜力。 LGFDY眼镜的相关色温是4264k。对于不同浓度的DY3 +离子的荧光水平F-4(9/2)的衰减轮廓在本眼镜中的不同浓度从单指数变化,以便更高浓度的单指数(> = 0.5mol%)DY3 +离子。因此,玻璃和掺杂剂(DY3 +离子)浓度的化学成分强烈影响能量转移机制。寿命非指数行为适用于S = 6的IH模型。发现LBGFDY05玻璃的量子效率为86%。系统调查表示研究了LGFDY眼镜的激光和白光发电应用的潜力。

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