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Synthesis and properties of Nd-doped oxynitride phosphate laser glasses

机译:Nd掺杂氮氧化物磷酸酯激光玻璃的合成与性能

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Abstract The substitution of nitrogen for oxygen in phosphate glasses improves the chemical, thermal and mechanical properties and particularly reduces their very high hygroscopic character, although the preparation of homogeneous and free of defects oxynitride bulk phosphate glasses through ammonolysis represents a big challenge. This work reports on the synthesis and properties of a series of Nd-doped oxynitride phosphate glasses with composition Na0.3K0.3Ba0.2PO3-3x/2Nx that may find application as laser hosts. Whereas the glass transition temperature, elastic modulus and index of refraction show a regular increase with the nitrogen content that agrees with previous studies, the effect of nitrogen onto the luminescence of Nd3+ ions appears to be more complicated. The average lifetime of the decay from the 4F3/2 level decreases with the N/P ratio of the glasses, which is thought to be mainly due to the presence of water from the ammonolysis reaction. However, further thermal treatments under N2 flow of an oxynitride glass have shown an important reduction of the water content as well as a drastic increase of the luminescence lifetime of Nd3+, this being a promising method for the development of laser phosphate glasses having good chemical and mechanical properties. Highlights ? Nd-doped oxynitride phosphate glasses have been obtained through ammonolysis. ? Elastic modulus, glass transition and refractive index increase with the N/P ratio. ? Water from ammonolysis reactions is detrimental for the Nd luminescence decay. ? Further treatment under N2 of the oxynitride glasses strongly increases Nd lifetime. ]]>
机译:<![cdata [ 抽象 磷酸盐玻璃中氧的替代改善了化学,热和机械性能,特别是降低了它们的高度吸湿性的特征,尽管通过氨解均匀的己族磷酸玻璃均匀的制备且无缺陷症状代表着大挑战。这项工作报告了一系列Nd掺杂氮氧化物磷酸盐玻璃的合成和性质,其中组合Na 0.3 K 0.3 ba 0.2 Po 3-3x / 2 N X ,可以找到应用程序作为激光主机。虽然玻璃化转变温度,弹性模量和折射率显示常规增加与先前研究同意的氮含量,氮气对ND 3 + 离子似乎更复杂。从 4> 4 f 3/2 级别用n减少/ P比玻璃的比例,这被认为是来自氨解反应的水的存在。然而,在n 2 氧氮化物玻璃的流动显示出含水量的重要降低以及Nd的发光寿命的急剧增加 3 + ,这是开发具有良好化学和机械性能的激光磷酸盐玻璃的有希望的方法。 突出显示 通过氨解基获得Nd掺杂的氧亚硝化磷酸盐玻璃。 弹性模量,玻璃转换和折射率随N / P比率而增加。 来自氨解反应的水对Nd发光衰减是有害的。 < / ce:list-item> 在n下进一步处理 2> 2 氧氮化物玻璃强烈增加Nd寿命。 ]]>

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