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Lanthanide Organic Framework Luminescent Thermometers

机译:镧系有机骨架发光温度计

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摘要

Metal-organic frameworks (MOFs) are excellent platforms for engineering luminescence properties as their building blocks, metal ions, linkers, and guest ions or molecules, are all potential sources of light emission. Temperature is one of the most important physical properties affecting the dynamics and viability of natural and engineered systems. Because the luminescence of certain lanthanide-bearing MOFs changes considerably with temperature, in the last few years, these materials have been explored as optical thermometers, especially in temperature sensing based on the intensity ratios of two separate electronic transitions. This review discusses the main concepts and ideas assisting the design of such ratiometric thermometers, and identifies the main challenges presented to this nascent field: develop nanothermometers for bio-applications and nanomedicine; understand the energy transfer mechanisms determining the thermal sensitivity; achieve effective primary thermometers; realize multifunctional nanothermometers; integrate Ln(3+)-based thermometers in commercial products.
机译:金属有机框架(MOF)是出色的工程发光特性平台,因为它们的构建基块,金属离子,连接基,客体离子或分子都是潜在的发光源。温度是影响自然和工程系统的动力学和生存能力的最重要的物理属性之一。由于某些含镧系元素的MOF的发光随温度变化很大,因此在最近几年中,这些材料已被用作光学温度计,特别是在基于两个独立电子跃迁强度比的温度感测中。这篇综述讨论了帮助设计这种比例温度计的主要概念和思想,并指出了这一新兴领域面临的主要挑战:开发用于生物应用和纳米医学的纳米温度计;了解决定热敏性的能量传递机制;达到有效的初级温度计;实现多功能纳米温度计;将基于Ln(3+)的温度计集成到商业产品中。

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