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用于测温的金属有机骨架(MOFs)的工程设计。

Engineering of metal-organic frameworks (MOFs) for thermometry.

机构信息

Department of Chemistry, Pandit Deendayal Energy University, Gandhinagar, Gujarat 382426, India.

出版信息

Dalton Trans. 2023 Jun 6;52(22):7383-7404. doi: 10.1039/d3dt01048a.

Abstract

Metal-organic frameworks (MOFs ) are excellent candidates for use in chemistry, material sciences and engineering thanks to their interesting qualitative features and potential applications. Quite interestingly, the luminescence of MOFs can be engineered by regulation of the ligand design, metal ion selection and encapsulation of guest molecules within the MOF cavity. Temperature is a very crucial physical parameter and the market share of temperature sensors is rapidly expanding with technology and medicinal advancement. Among the wide variety of available temperature sensors, recently MOFs have emerged as potential temperature sensors with the capacity to precisely measure the temperature. Lanthanide-based thermometry has advantages because of its ratiometric response ability, high quantum yield and photostability, and therefore lanthanide-based MOFs were initially focused on to construct MOF thermometers. As science and technology have gradually changed, it has been observed that with the inclusion of dye, quantum dots, . within the MOF cavity, it is possible to develop MOF-based thermometry. This review consolidates the recent advances of MOF-based ratiometric thermometers and their mechanism of energy transfer for determining the temperature (thermal sensitivity and temperature uncertainty). In addition, some fundamental points are also discussed, such as concepts for guiding the design of MOF ratiometric thermometers, thermometric performance and tuning the properties of MOF thermometers.

摘要

金属-有机骨架(MOFs)因其有趣的定性特征和潜在应用而成为化学、材料科学和工程领域的优秀候选者。有趣的是,通过调节配体设计、金属离子选择以及客体分子在 MOF 腔体内的封装,可以对 MOF 的发光进行调控。温度是一个非常关键的物理参数,随着技术和医学的进步,温度传感器的市场份额正在迅速扩大。在各种可用的温度传感器中,最近 MOF 作为潜在的温度传感器脱颖而出,能够精确测量温度。基于镧系元素的测温法具有比色响应能力、高量子产率和光稳定性等优点,因此最初专注于基于镧系元素的 MOF 来构建 MOF 温度计。随着科学技术的逐步发展,人们观察到,通过在 MOF 腔体内包含染料、量子点等,可以开发基于 MOF 的测温法。本综述总结了基于 MOF 的比率测温法及其能量传递机制的最新进展,用于确定温度(热灵敏度和温度不确定性)。此外,还讨论了一些基本要点,例如指导 MOF 比率测温法设计的概念、测温性能以及调整 MOF 温度计性能。

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