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首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Cool/warm white light luminescent traits and energy transfer studies of Dy3+/Er3+/Sm3+ triply doped multicomponent borosilicate glasses for lighting applications
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Cool/warm white light luminescent traits and energy transfer studies of Dy3+/Er3+/Sm3+ triply doped multicomponent borosilicate glasses for lighting applications

机译:DY3 + / ER3 + / SM3 + TRIPLY掺杂多组分硼硅酸盐玻璃用于照明应用的凉爽/暖白光发光特性和能量转移研究

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摘要

This paper reports the synthesis of Dy3+/Er3+/Sm3+ ions singly and triply doped with multicomponent borosilicate glasses by conventional melt quench technique. Presence of an additional excitation band at 374 nm in the excitation spectrum corresponding to Dy3+ (?emi = 574 nm) reveals the possibility of obtaining the fluorescence spectra of Dy3+, Er3+, and Sm3+ together and predicts the presence of energy transfer in the prepared triply doped glassy system. Surprisingly, the luminescent bands owing to Dy3+, Er3+, and Sm3+ ions were observed in every luminescence spectra recorded with 374, 379, and 400 nm excitation wavelengths. The intensity of Dy3+ and Er3+ emission peaks showed a remarkable decrement with an increase in Sm3+ concentration, while Sm3+ bands seemed to be enhanced monotonously. The recorded emission intensities were further characterized by using CIE diagram and obtained CIE coordinates and CCT values recommend the glasses for cool or warm near white light emitting applications.
机译:本文报道了用传统的熔体淬火技术合成了单掺和三掺多组分硼硅酸盐玻璃的Dy3+/Er3+/Sm3+离子。在与Dy3+对应的激发光谱中,374 nm处存在额外的激发带(?emi=574 nm)揭示了同时获得Dy3+、Er3+和Sm3+荧光光谱的可能性,并预测了所制备的三重掺杂玻璃系统中存在的能量转移。令人惊讶的是,在374、379和400 nm激发波长下记录的每个发光光谱中都观察到了由Dy3+、Er3+和Sm3+离子引起的发光带。随着Sm3+浓度的增加,Dy3+和Er3+发射峰的强度显著降低,而Sm3+带似乎单调增强。通过使用CIE图进一步表征记录的发射强度,并获得CIE坐标和CCT值,建议将玻璃用于冷或暖近白光发射应用。

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