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Dye-sensitized lanthanide containing nanoparticles for luminescence based applications

机译:含有纳米颗粒的染料敏化镧系元素,用于发光应用

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摘要

Due to their exceptional luminescent properties, lanthanide (Ln) complexes represent a unique palette of probes in the spectroscopic toolkit. Their extremely weak brightness due to forbidden Ln electronic transitions can be overcome by indirect dye-sensitization from the antenna effect brought by organic ligands. Despite the improvement brought by the antenna effect, (bio)analytical applications with discrete Ln complexes as luminescent markers still suffers from low sensitivity as they are limited by the complex brightness. Thus, there is a need to develop nano-objects that cumulate the spectroscopic properties of multiple Ln ions. This review firstly gives a brief introduction of the spectral properties of lanthanides both in complexes and in nanoparticles (NPs). Then, the research progress of the design of Ln-doped inorganic NPs with capping antennas, Ln-complex encapsulated NPs and Ln-complex surface functionalized NPs is presented along with a summary of the various photosensitizing ligands and of the spectroscopic properties (excited-state lifetime, brightness, quantum yield). The review also emphasizes the problems and limitations encountered over the years and the solutions provided to address them. Finally, a comparison of the advantages and drawbacks of the three types of NP is provided as well as a conclusion about the remaining challenges both in the design of brighter NPs and in the luminescence based applications.
机译:由于他们特殊的发光性质,镧系元素(Ln)复合物代表一个独特的调色板光谱探测的工具包。由于禁止他们极度疲弱的亮度Ln电子转换是可以克服的间接dye-sensitization天线效应带来的有机配体。改善带来的天线效应,(生物)分析应用程序与离散Ln配合物作为发光标记仍然存在从低灵敏度的限制复杂的亮度。开发nano-objects,累积光谱特性的多个Ln离子。本文首先简要的介绍在镧系元素的光谱性质配合物和纳米颗粒(NPs)。的研究进展Ln-doped的设计无机NPs与覆盖天线,Ln-complex封装NPs和Ln-complex表面功能化NPs一起提出了一个总结各种photosensitizing配体和光谱特性(激发态寿命、亮度、量子收益率)。多年来,遇到和局限性提供的解决方案来解决这些问题。比较的优点和缺点这三种类型的NP以及提供结论在剩下的挑战NPs在亮的设计基于发光的应用程序。

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