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含乙基 -(4 - 氟苯甲酰基)乙酸酯的三价铕配合物中基于Judd - Ofelt表征的发光性质相关研究

Relative Study of Luminescent Properties with Judd-Ofelt Characterization in Trivalent Europium Complexes Comprising ethyl-(4-fluorobenzoyl) Acetate.

作者信息

Devi Rekha, Chahar Sangeeta, Khatkar S P, Taxak V B, Boora Priti

机构信息

Department of Chemistry, Maharshi Dayanand University, Rohtak, 124001, India.

出版信息

J Fluoresc. 2017 Jul;27(4):1349-1358. doi: 10.1007/s10895-017-2069-3. Epub 2017 Mar 13.

Abstract

Five new europium(III) complexes Eu(p-EFBA).(HO) (C1), Eu(p-EFBA).neo (C2), Eu(p-EFBA).batho (C3), Eu(p-EFBA).phen (C4), Eu(p-EFBA).bipy (C5) have been synthesized by using ethyl-(4-fluorobenzoyl) acetate (p-EFBA) as β-ketoester ligand and neocuproine (neo), bathophenanthroline (batho), 1,10-phenanthroline (phen) and 2,2-bipyridyl (bipy) as ancillary ligands. The synthesized complexes C1-C5 were characterized by elemental analysis, nuclear magnetic resonance spectroscopy (H-NMR), infrared (IR) spectroscopy, thermogravimetric analysis (TG/DTG), UV-visible and photoluminescence (PL) spectroscopy. The relative study of luminescence spectra of complexes with the previously reported complexes of isomeric ligand (ortho and meta substituted ligand) indicate the higher luminescence properties of complexes as an effect of fluorine position on β-ketoester ligand. The para substituted ligand shows a remarkable effect on quantum efficiencies and Judd-Ofelt intensity parameters (Ω Ω) of the complexes. The higher value of intensity parameter Ω associated with hypersensitive D → F transition of europium(III) ion revealing highly polarizable ligand field. The purposed energy transfer mechanism of complexes indicates the efficient energy transfer in complexes.

摘要

以乙基-(4-氟苯甲酰基)乙酸酯(p-EFBA)作为β-酮酯配体,新亚铜试剂(neo)、4,7-二苯基-1,10-菲啰啉(batho)、1,10-菲啰啉(phen)和2,2-联吡啶(bipy)作为辅助配体,合成了五种新型铕(III)配合物Eu(p-EFBA)·(H₂O) (C1)、Eu(p-EFBA)·neo (C2)、Eu(p-EFBA)·batho (C3)、Eu(p-EFBA)·phen (C4)、Eu(p-EFBA)·bipy (C5)。通过元素分析、核磁共振光谱(H-NMR)、红外(IR)光谱、热重分析(TG/DTG)、紫外可见和光致发光(PL)光谱对合成的配合物C1-C5进行了表征。与先前报道的异构体配体(邻位和间位取代配体)的配合物的发光光谱的相关研究表明,由于氟在β-酮酯配体上的位置,配合物具有更高的发光性能。对位取代配体对配合物的量子效率和贾德-奥费尔特强度参数(Ω₂、Ω₄)有显著影响。与铕(III)离子的超灵敏D→F跃迁相关的强度参数Ω的较高值表明配体场具有高度极化性。所提出的配合物的能量转移机制表明配合物中存在有效的能量转移。

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