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含吡啶-3,5-二甲酸连接体的 Eu(III)和 Tb(III)多功能配合物:晶体结构、可调发射、能量传递和温度传感。

Multifunctional Luminescent Material Eu(III) and Tb(III) Complexes with Pyridine-3,5-Dicarboxylic Acid Linker: Crystal Structures, Tunable Emission, Energy Transfer, and Temperature Sensing.

机构信息

School of Science , Chongqing University of Posts and Telecommunications , Chongqing , 400065 , P. R.China.

出版信息

Inorg Chem. 2019 Mar 18;58(6):3780-3788. doi: 10.1021/acs.inorgchem.8b03319. Epub 2019 Feb 27.

Abstract

A series of lanthanide organic complexes, namely, [LnPDC(HO)]HO (Ln = Eu, Tb, Eu Tb, HPDC: pyridine-3,5-dicarboxylic acid), were synthesized via hydrothermal method. Eu-PDC was characterized by single-crystal X-ray diffraction. The powder X-ray diffraction, Fourier transform infrared spectra, and thermogravimetric analysis illustrate that Eu-PDC, Tb-PDC, and Eu Tb-PDC complexes are isostructural. All the complexes exhibit strong emission even though water molecules coordinated in the structure. Tunable emission color from green, yellow to red is realized by adjusting the Eu/Tb ratio in mixed Eu Tb-PDC complexes. Energy transfer from Tb to Eu is discussed in detail via fluorescence decay and time resolution spectra. The detailed energy transfer process sees that the emitting color of EuTb-PDC shifts from green to orange in a time interval of 153-790 μs. In addition, temperature-dependent emission of the EuTb-PDC complex indicates that it is a potential solid state material for a luminescence thermometer in the range of 293-333 K. The temperature resolution is less than 0.16 K. The optical properties of the EuTb-PDC complex indicate that it is a multifunctional luminescent material with promising applications in temperature sensing, time resolution imaging, lighting, and displaying.

摘要

一系列镧系有机配合物,即[LnPDC(HO)]HO(Ln = Eu,Tb,EuTb,HPDC:吡啶-3,5-二羧酸),通过水热法合成。Eu-PDC 通过单晶 X 射线衍射进行了表征。粉末 X 射线衍射、傅里叶变换红外光谱和热重分析表明,Eu-PDC、Tb-PDC 和 EuTb-PDC 配合物具有同构结构。尽管结构中配位了水分子,但所有配合物都表现出强烈的发射。通过调节混合 EuTb-PDC 配合物中的 Eu/Tb 比,可以实现从绿色、黄色到红色的可调发射颜色。通过荧光衰减和时间分辨光谱详细讨论了 Tb 到 Eu 的能量转移。详细的能量转移过程表明,EuTb-PDC 的发射颜色在 153-790 μs 的时间间隔内从绿色转变为橙色。此外,EuTb-PDC 配合物的温度依赖性发射表明,它是一种在 293-333 K 范围内用于发光温度计的潜在固态材料。温度分辨率小于 0.16 K。EuTb-PDC 配合物的光学性质表明,它是一种多功能发光材料,有望在温度传感、时间分辨成像、照明和显示等领域得到应用。

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