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Er3+-doped niobium alkali germanate glasses and glass-ceramics: NIR and visible luminescence properties

机译:ER3 +掺杂的铌碱锗玻璃和玻璃陶瓷:NIR和可见发光性质

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摘要

Niobium alkali germanate glasses doped with Er3+ up to 4.0 mol% were synthesized by the melt-quenching technique. Glass-ceramics were obtained by controlled heat treatment of the pristine glass. Thermal and optical properties were investigated and are shown to depend on the erbium content. The main radiative parameters were obtained based on the Judd-Ofelt theory. The change of radiation energy processes and modification of the environment of the earth-rare ion occurs in samples with high erbium concentrations. In general, strong enhancement of upconversion emission occurs due to the efficient process of excited-state absorption for the high erbium content samples. Visible tunable phosphors emitting either red-to-green light depends on the erbium content and heat treatment. In addition, these glasses and glass-ceramics samples have high thermal stability and wide transmission window. For these reasons, Er3+-doped niobium germanate glasses and glass-ceramics may be suitable for photonic device applications, especially as visible laser.
机译:通过熔融淬火技术合成掺杂有ER3 +达4.0mol%的铌碱锗玻璃。通过对原始玻璃的控制热处理获得玻璃陶瓷。研究了热和光学性质,并显示依赖于铒含量。基于Judd-elt理论获得了主要的辐射参数。辐射能量过程的变化和地球稀土环境的改变发生在具有高铒浓度的样品中。通常,由于高铒含量样品的兴奋状态吸收的有效过程,发生了强大的增强升高的发射。发出红绿灯的可见可调荧光粉取决于铒含量和热处理。此外,这些玻璃和玻璃陶瓷样品具有高热稳定性和宽透射窗。由于这些原因,ER3 +掺杂的铌锗玻璃和玻璃陶瓷可能适用于光子器件应用,尤其是可见光。

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