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Design, Synthesis, Crystal Structure and Photoluminescence Properties of Four New Europium (III) Complexes with Fluorinated β-Diketone Ligand

机译:用氟化β-Diketone配体的四种新铕(III)配合物的设计,合成,晶体结构和光致发光性能

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The strong photoluminescence properties of europium complexes with organic ligands attracted the attention of many researchers and found a wide range of uses in medical, industrial and biological fields. In this article, four new Tetrakis europium complexes 3a , 3b , 3c and 3d have been prepared using 1-phenyl-4,4,4-trifluoro-1,3-butenedionato ligand and pyridinium, bipyridinium, piperazinium and piperidinium counter cations. These complexes have been characterized by negative FAB-mass. The crystal structures of 3a , 3b , 3c and 3d were determined by single crystal X-ray diffraction analysis. The complex 3a crystallized in monoclinic form, space group P 2_(1)/n with four molecules in the unit cell. The complex 3b crystallized in monoclinic form, space group P 2/n with two complex molecules in the unit cell. The complex 3c crystallized in monoclinic form, space group C 2/c with sixteen molecules in the unit cell. The complex 3d crystallized in monoclinic form, space group P 2_(1)/n with four complex molecules in the unit cell. The complex 3a has 1,2-alternative structure, 3b has 1,3-alternative structure, 3c has cone like structure and 3d has partial cone like structure. The photoluminescence properties of these complexes have been evaluated. Strong red emissions were observed in all four complexes due to ~(5)D_(0) → ~(7)F_(2) transition of Europium (III) ions under UV excitation. Four β -diketone ligands acted as strong antenna ligands and transferred the absorbed energy to europium (III) ion effectively; consequently strong red luminescence was observed.
机译:铕配合物的强光致发光性能与有机配体引起了许多研究人员的关注,并发现了医学,工业和生物领域的广泛用途。在本文中,使用了使用1-苯基-4,4,4-三氟-1,3-丁丁酯配体制备了四种新的四个新的四方铕配合物 3a, 3b, 3c和 3d和吡啶,双吡啶,哌嗪和哌啶耳阳离子。这些配合物的特征在于阴性块。通过单晶X射线衍射分析确定 3A, 3B, 3C和 3D的晶体结构。在单斜叶片中结晶的复合物 3a,空间组 p 2_(1)/ n,单位细胞中有四个分子。以单斜晶形式结晶的复合物 3b P 2 /Ⅰ> N与单位细胞中的两个复杂分子。在单斜晶形式中结晶的复合物 3c,空间组 c 2 / c c,其中6分子单体细胞。以单斜晶形式结晶的复合物 3D,空间组 p 2_(1)/ n,单位细胞中有四个复杂分子。复合物 3a具有1,2替代结构, 3b具有1,3替代的结构, 3c具有锥形结构,并且 3d具有局部锥形结构。已经评估了这些配合物的光致发光性质。由于〜(5)D_(0)→〜(7)F_(2)转型(III)离子在紫外线激发下,在所有四个复合物中观察到强烈的红色排放。四个β-diketone配体用作强天线配体,有效地将吸收的能量转移到铕(III)离子;因此,观察到强烈的红色发光。

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