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首页> 外文期刊>Journal of the European Ceramic Society >Structural, spectroscopic and thermal properties of hot-pressed Nd:(Ca0.94Gd0.06)F-2.06 transparent ceramics
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Structural, spectroscopic and thermal properties of hot-pressed Nd:(Ca0.94Gd0.06)F-2.06 transparent ceramics

机译:热压Nd的结构,光谱和热性质:(Ca0.94gd0.06)F-2.06透明陶瓷

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摘要

0.5-5.0 at.% Nd3+ doped (Ca(0.94)Gd(0.0)6)F-2.06 transparent ceramics were fabricated by vacuum hot-pressing sintering. The structural, spectroscopic and thermal properties of Nd:(Ca(0.94)Gd(0.0)6)F-2.06 transparent ceramics, as well as the influence of Nd3+ content on these properties were investigated. The as-fabricated ceramic samples exhibited high transparency and nearly pore-free microstructure. The absorption peaks located at 538 nm, 576 nm, 736 nm, 792 nm and 865 nm were attributed to the transitions from ground state to the excited states of Nd3+ ions, and the absorption coefficients increased linearly with Nd3+ content increasing. The emission band of the sample doped with 1 at.% Nd3+ concentration exhibited the highest emission intensity, while the lifetime decreased sharply with the increase of Nd3+ concentration. In addition, with Nd3+ content increasing from 0.5 to 5.0 at.%, the thermal expansivity coefficients increased slightly, while the thermal conductivity decreased from 4.21 to 2.36 W/m K at room temperature.
机译:0.5-5.0。%ND3 +掺杂(Ca(0.94)Gd(0.0)6)F-2.06通过真空热压烧结制造F-2.06透明陶瓷。研究了Nd:(Ca(0.94)Gd(0.0)6)F-2.06透明陶瓷的结构,光谱和热性能,以及Nd3 +含量对这些性质的影响。制造的陶瓷样品表现出高透明度和几乎无孔的微观结构。位于538nm,576nm,736nm,792nm和865nm的吸收峰被归因于从地面状态到兴奋状态的转变为Nd3 +离子的兴奋状态,并且吸收系数随ND3 +含量的增加而增加。掺杂有1at的样品的发射带。%Nd3 +浓度的发射强度表现出最高的发光强度,而寿命随着ND3 +浓度的增加而急剧下降。另外,ND3 +含量从0.5升至5.0。%,热膨胀系数略微增加,而导热率在室温下从4.21降至2.36W / m k。

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