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Research Progress of Europium Complexes Luminescent Materials

机译:铕综合体发光材料的研究进展

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Rare earth is a general term for 17 chemical elements with atomic numbers of 21, 39 and 57~71 in group IIIB in the periodic table. Lanthanide complexes can show unique linear emission bands and have very long luminous lifetime. Lanthanide complexes can be used in electroluminous (EL) devices, lasers and light-emitting biosensors in visible and near-infrared spectra. Therefore, it is of great significance to find new lanthanide luminous complexes. The emission peak of rare earth europium complex is mainly located in the characteristic emission wavelength of ~5D_0→~7F_2 of Eu~(3+). The emission wavelength is about 613nm, and it shows the fluorescence characteristics of europium ions. In order to further study the subject, this paper will focus on the current research on luminous rare earth complexes-organic complexes centered on Eu~(3+)(emission red light). This paper summarizes the luminous principle of rare earth europium and its application in some fields, and expounds the existing problems at present and looks forward to its application prospect in the future.
机译:稀土是17个化学元素的一般术语,其在周期表中IIIB组中的原子序数为21,39和57〜71。镧系元络合物可以显示独特的线性发射带,具有很长的发光寿命。镧系元素配合物可用于可见和近红外光谱中的硫化(EL)器件,激光器和发光的生物传感器。因此,找到新的镧系元素发光络合物是具有重要意义。稀土铕络合物的排放峰主要位于Eu〜(3+)的〜5d_0→〜7f_2的特征发射波长。发射波长为约613nm,显示出铕离子的荧光特性。为了进一步研究该主题,本文将专注于目前对欧盟〜(3 +)(排放红光)为中心的发光稀土配合物 - 有机络合物的研究。本文总结了稀土铕的发光原理及其在某些领域的应用,并阐述了目前存在的问题,并期待其未来的应用前景。

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