首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhanced tunable color emission in transparent Ag/Mn2+ codoped zinc borate glasses for broad band light source
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Enhanced tunable color emission in transparent Ag/Mn2+ codoped zinc borate glasses for broad band light source

机译:用于宽带光源的透明Ag / Mn2 +共掺杂硼酸锌玻璃中的可调色发射增强

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Zinc borate oxyfluoride glasses containing silver ions (Ag+), Ag nanoclusters and manganese ions (Mn2+) have been successfully prepared using the melt-quenching method. Their structure and luminescent properties were evaluated using transmission electron microscopy (TEM), absorption measurements, steady and time-resolved photoluminescence spectra and fluorescence lifetime measurements. Benefitting from the unique excitation/emission characteristics of Ag nanoclusters in the matrix, the Ag singly doped glass exhibited intriguing wavelength dependent, broad band luminescent performance. After Mn2+ ions were built into the singly doped sample, the emission band was extended to white emission and the intensity was enhanced 13 times with a maximal quantum yield of 24.9%. It was demonstrated experimentally that dual-mode energy transfer does occur from isolated Ag+ and (or) Ag nanoclusters to Mn2+. At the same time, the addition of Mn2+ substantially promotes the formation of Ag nanoclusters. Direct spectroscopic evidence as well as the assumed mechanism have been presented for these processes. This research may help to devise a new perspective for the use of noble metal nanoclusters and transition metals in designing broad band tunable light source.
机译:采用熔融淬火法成功制备了含银离子(Ag +),银纳米团簇和锰离子(Mn2 +)的硼酸氟氟化锌玻璃。使用透射电子显微镜(TEM),吸收测量,稳定和时间分辨的光致发光光谱以及荧光寿命测量来评估其结构和发光特性。得益于基质中Ag纳米团簇的独特激发/发射特性,Ag单独掺杂的玻璃表现出令人感兴趣的与波长相关的宽带发光性能。将Mn2 +离子构建到单掺杂样品中后,发射带扩展为白色发射,强度提高了13倍,最大量子产率为24.9%。实验证明,双模能量转移确实发生了,从孤立的Ag +和(或)Ag纳米团簇转移到Mn2 +。同时,Mn2 +的添加大大促进了Ag纳米团簇的形成。已经为这些过程提供了直接的光谱证据以及假定的机理。这项研究可能有助于设计贵金属纳米团簇和过渡金属在设计宽带可调光源中的应用的新观点。

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