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Temperature sensors based on europium polyoxometalate and mesoporous terbium metal-organic framework

机译:基于铕的温度传感器和中孔铽金属 - 有机骨架的温度传感器

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摘要

The first example of ratiometric luminescent thermometers based on lanthanide molecular species encapsulated in a lanthanide metal-organic framework (MOF) is reported. In EuW10@Tb-TATB, the [EuW10O36](9-) polyoxometalate (POM) is incorporated into the cavities of the mesoporous terbium MOF Tb-TATB with two different POM loadings (9.1 and 19.5 wt%). Eu3+ and Tb3+ ions of the POM and MOF, respectively, act as dual emitters. Optical measurements evidence efficient Tb3+-to-Eu3+ energy transfer, suggesting that the EuW10 units are close to terbium centers. These observations are supported by computational investigations whereby a favored localisation of the EuW10 POM in the MOF's pores is found close to Tb-centers evidencing hydrogen bond type interactions between terminal oxygen atoms of the POM and Tb-coordinated water molecules. The reported materials act as temperature sensors in the physiological domain, exhibiting high relative thermal sensitivities of 2.68% K-1 and 2.37% K-1 at 300 K for the 9.1 wt% and 19.5 wt% composites, respectively, with a thermal uncertainty of 0.09 K.
机译:报道了基于封装在镧系金属有机骨架(MOF)中的镧系分子物种的比率发光温度计的第一个示例。在里面EuW10@Tb-TATB,即[EuW10O36](9-)多金属氧酸盐(POM)以两种不同的POM负载量(9.1和19.5 wt%)并入介孔铽MOF Tb TATB的空腔中。POM和MOF中的Eu3+和Tb3+离子分别充当双发射器。光学测量证明了有效的Tb3+到Eu3+的能量转移,表明EuW10单元靠近铽中心。这些观察结果得到了计算研究的支持,其中在MOF孔隙中发现EuW10 POM在Tb中心附近有利于定位,证明POM末端氧原子和Tb配位水分子之间存在氢键型相互作用。所报道的材料在生理学领域充当温度传感器,对于9.1 wt%和19.5 wt%的复合材料,在300 K下分别表现出2.68%K-1和2.37%K-1的高相对热灵敏度,热不确定度为0.09 K。

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