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利用发光镧系离子。

Taking advantage of luminescent lanthanide ions.

作者信息

Bünzli Jean-Claude G, Piguet Claude

机构信息

Ecole Polytechnique Fédérale de Lausanne EPFL, Laboratory of Lanthanide Supramolecular Chemistry LCSL, CH-1015, Lausanne, Switzerland.

出版信息

Chem Soc Rev. 2005 Dec;34(12):1048-77. doi: 10.1039/b406082m. Epub 2005 Sep 20.

Abstract

Lanthanide ions possess fascinating optical properties and their discovery, first industrial uses and present high technological applications are largely governed by their interaction with light. Lighting devices (economical luminescent lamps, light emitting diodes), television and computer displays, optical fibres, optical amplifiers, lasers, as well as responsive luminescent stains for biomedical analysis, medical diagnosis, and cell imaging rely heavily on lanthanide ions. This critical review has been tailored for a broad audience of chemists, biochemists and materials scientists; the basics of lanthanide photophysics are highlighted together with the synthetic strategies used to insert these ions into mono- and polymetallic molecular edifices. Recent advances in NIR-emitting materials, including liquid crystals, and in the control of luminescent properties in polymetallic assemblies are also presented. (210 references.).

摘要

镧系离子具有迷人的光学性质,它们的发现、最初的工业用途以及目前的高科技应用在很大程度上都受其与光的相互作用所支配。照明设备(经济的发光灯、发光二极管)、电视和电脑显示器、光纤、光放大器、激光器,以及用于生物医学分析、医学诊断和细胞成像的响应性发光染料都严重依赖镧系离子。这篇批判性综述是为广大化学家和材料科学家量身定制的;文中突出了镧系元素光物理的基础知识,以及用于将这些离子插入单金属和多金属分子结构中的合成策略。还介绍了近红外发光材料(包括液晶)的最新进展,以及多金属组装体中发光性质控制方面的进展。(参考文献210篇)

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