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Coumarin 7 functionalized europium-based metal-organic-framework luminescent composites for dual-mode optical thermometry

机译:香豆素7官能化的基于铕的金属 - 有机框架发光复合材料,用于双模光学测温物

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摘要

Developing a highly reliable non-contact optical thermometer probe with excellent sensitivity and multi-mode temperature sensing behaviours is always a great challenge. Here, dual-emitting luminescent composites fabricated using a europium-based metal-organic framework (Eu-MOF) and surface-immobilized molecular dye (Coumarin 7) were successfully prepared by a simple solvothermal method, followed by a post-modification strategy. Benefiting from the linear response in fluorescence intensity ratios (FIRs) of Eu(3+)to Coumarin 7 dye molecules in the temperature range from 10 degrees C to 90 degrees C, the composite demonstrated the maximum relative temperature sensitivity (S-r) of 0.50% degrees C(-1)at 90 degrees C. Moreover, the observed red-shift of Coumarin 7 emission with the temperature readout suggests a dual-mode optical thermal sensing mechanism in the dye-immobilized MOF composite. Their excellent reusability and temperature sensing mechanisms have been also investigated. These results demonstrate the potential of the Coumarin 7 functionalized Eu-MOF composite as a dual-mode optical thermometer for temperature sensing applications.
机译:开发高度可靠的非接触式光学温度计探头,具有出色的灵敏度和多模式温度传感行为总是一个巨大的挑战。这里,通过简单的溶剂热法成功地制备了使用基于铕的金属 - 有机骨架(EU-MOF)和表面固定的分子染料(香豆素7)制造的双发光复合材料,然后通过改性后策略制备。从10℃至90℃的温度范围内的欧盟(3+)的荧光强度比(FIR)的线性响应受益于香豆素7染料分子,复合材料的最大相对温度敏感度(SR)为0.50%此外,测量C(-1)在90摄氏度下,通过温度读数观察到的香豆素7发射的红移表明染料固定的MOF复合材料中的双模光学热感测机构。还研究了它们出色的可重用性和温度传感机制。这些结果证明了香豆素7官能化EU-MOF复合材料作为温度传感应用的双模光学温度计的潜力。

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