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揭示过渡金属共掺杂在镧系元素上转换纳米粒子中的益处。

Unravelling the benefits of transition-metal-co-doping in lanthanide upconversion nanoparticles.

机构信息

NanoSensing Group, Department of Chemistry, Ghent University, Krijgslaan 281-S3, B-9000, Ghent, Belgium.

出版信息

Chem Soc Rev. 2022 Aug 15;51(16):6893-6908. doi: 10.1039/d2cs00495j.

Abstract

Recent advances reveal that upconversion (UC) luminescent materials are highly important not just from a scientific, but also from a future application standpoint. Although significant progress has been made in this field in recent decades, still their versatile applications are hindered by the low upconversion luminescence intensity and low tuneability, which has hampered further implementation in real life applications. We find it highly beneficial to compile a summary of recent relevant literature and propose ways to enhance upconversion efficiency in lanthanide nanomaterials. One very promising way to tackle this problem is through implementing transition metal ion co-dopants into the materials, which is the focus of this tutorial review. In this review, the recent studies related to the tailored design of UC materials with transition metal ion co-dopants have been summarized, and the desirable functionality of transition metal ions in the host matrixes has been discussed. Apart from improving the upconversion efficiency, the implementation of transition metal-co-dopants into lanthanide upconversion materials has recently sparked interest in applications such as imaging, drug delivery or nanothermometers.

摘要

最近的进展表明,上转换(UC)发光材料不仅在科学上非常重要,而且从未来的应用角度来看也是如此。尽管近几十年来在这一领域取得了重大进展,但由于上转换发光强度低和可调谐性低,其多功能应用仍然受到阻碍,这阻碍了它们在实际应用中的进一步实施。我们发现,将最近相关文献的摘要汇编在一起,并提出提高镧系纳米材料上转换效率的方法是非常有益的。解决这个问题的一个很有前途的方法是通过在材料中引入过渡金属离子共掺杂剂,这是本教程综述的重点。在这篇综述中,总结了与过渡金属离子共掺杂剂的 UC 材料的定制设计相关的最新研究,并讨论了过渡金属离子在宿主基质中的理想功能。除了提高上转换效率外,将过渡金属共掺杂剂引入镧系上转换材料最近还激发了人们对成像、药物输送或纳米温度计等应用的兴趣。

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