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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Preparation of bi-functional NaGdF4-based upconversion nanocrystals and fine-tuning of emission colors of the nanocrystals by doping with Mn~(2+)
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Preparation of bi-functional NaGdF4-based upconversion nanocrystals and fine-tuning of emission colors of the nanocrystals by doping with Mn~(2+)

机译:基于双功能NaGdF4的上转换纳米晶体的制备及通过掺杂Mn〜(2+)对纳米晶体的发射颜色进行微调

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摘要

Synthesis of fluorescent and magnetic bi-functional NaGdF_4-based upconversion nanocrystals and a study of the effect of doping Mn~(2+) on the fluorescent and magnetic properties of the nanocrystals have been carried out. It is found that the desired bi-functional nanocrystals can be synthesized successfully by a simple thermal decomposition method and the doping by Mn~(2+) has a large effect on the properties of the nanocrystals. The doping by Mn~(2+) can fine-tune the emission of the nanocrystals. When Mn~(2+) is doped in the nanocrystal NaGdF_4:Yb, Er, the red upconversion emission of the nanocrystals increases and green upconversion emission decreases or disappears. This makes the nanocrystal good for bioimaging since pure red upconversion emission can penetrate tissue deeply with high signaloise ratio. Moreover, the doping with Mn~(2+) can enable the nanocrystals to exhibit superparamagnetic properties. The HeLa cell imaging experiments reveal that the nanocrystals used as luminescent probes to label the cancer cells show strong upconversion luminescence. These results suggest that the developed nanocrystals, which have strong pure red upconversion emission and superparamagnetic properties, could serve as an upconversion luminescence and magnetic resonance (MR) probe for dual-modality bioimaging.
机译:进行了荧光和磁性双功能NaGdF_4基上转换纳米晶体的合成以及掺杂Mn〜(2+)对纳米晶体的荧光和磁性的影响的研究。发现通过简单的热分解方法可以成功地合成所需的双功能纳米晶体,并且Mn〜(2+)的掺杂对纳米晶体的性能影响很大。 Mn〜(2+)的掺杂可以微调纳米晶体的发射。当在纳米晶体NaGdF_4:Yb,Er中掺杂Mn〜(2+)时,纳米晶体的红色上转换发射增加,绿色上转换发射减少或消失。由于纯红色的上转换发射可以高信噪比穿透组织深处,因此这使纳米晶体非常适合生物成像。此外,Mn〜(2+)的掺杂可以使纳米晶体表现出超顺磁性。 HeLa细胞成像实验表明,用作发光探针标记癌细胞的纳米晶体显示出强的上转换发光。这些结果表明,已开发的纳米晶体具有很强的纯红色上转换发射和超顺磁性质,可以用作双模态生物成像的上转换发光和磁共振(MR)探针。

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