首页> 外文期刊>Luminescence: The journal of biological and chemical luminescence >Luminescence enhancement of terbium(III) perchlorate by 2,2′-dipyridyl on bis (benzylsulfinyl)methane complex and luminescence mechanism
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Luminescence enhancement of terbium(III) perchlorate by 2,2′-dipyridyl on bis (benzylsulfinyl)methane complex and luminescence mechanism

机译:2,2'-联吡啶在双(苄基亚磺酰基)甲烷配合物中的高氯酸ate(III)发光增强及发光机理

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A novel ternary complex, Tb_2L_4·L′·(ClO_4)_6·8H_2O, has been synthesized using bis(benzylsulfinyl)methane as the first ligand L and 2,2′-dipyridyl as the second ligand L′. The ternary complex was characterized by element analysis, molar conductivity, coordination titration analysis, infrared, thermogravimetric-differential scanning calorimetric and ultraviolet spectra. The results indicated that the composition of the complex was Tb_2L_4·L′·(ClO_4)_6·8H_2O (L = C_6H_5CH_2SOCH_2SOCH_2C_6H_5; L′ = Dipy). Fourier transform infrared results revealed that the perchlorate group was bonded with the Tb(III) ion by the oxygen atom, and the coordination was bidentate. The fluorescent spectra illustrated that the complex displayed characteristic fluorescence in the solid state. After the introduction of the second ligand, 2,2-dipyridyl, the relative emission intensity and fluorescence lifetime of the ternary complex Tb_2L_4·L′·(ClO_4)_6·8H_2O were enhanced compared to the binary complex TbL_(2.5)(ClO_4)_3·3H_2O. This indicated that the presence of both organic ligand bis(benzylsulfinyl)methane and the second ligand 2,2-dipyridyl could sensitize the fluorescence intensity of Tb(III) ion, and introduction of the 2,2-dipyridyl group resulted in an enhancement of the fluorescence of the Tb(III) ternary rare earth complex. The strongest characteristic fluorescence emission intensity of the ternary complex was 9.36 times that of the binary complex. The phosphorescence spectra and fluorescence lifetime of the complex were also measured.
机译:以双(苄基亚磺酰基)甲烷为第一配体L,以2,2'-二吡啶基为第二配体L'合成了新型三元络合物Tb_2L_4·L'·(ClO_4)_6·8H_2O。通过元素分析,摩尔电导率,配位滴定分析,红外,热重-差示扫描量热法和紫外光谱对三元配合物进行表征。结果表明,配合物的组成为Tb_2L_4·L′·(ClO_4)_6·8H_2O(L = C_6H_5CH_2SOCH_2SOCH_2C_6H_5; L'= Dipy)。傅里叶变换红外结果表明,高氯酸盐基团通过氧原子与Tb(III)离子键合,配位为二齿。荧光光谱表明该配合物在固态下显示出特征性荧光。引入第二种配体2,2-二吡啶基后,与二元络合物TbL_(2.5)(ClO_4)相比,三元络合物Tb_2L_4·L'·(ClO_4)_6·8H_2O的相对发射强度和荧光寿命得到了提高。 _3·3H_2O。这表明,有机配体双(苄基亚磺酰基)甲烷和第二个配体2,2-二吡啶基的存在都可以使Tb(III)离子的荧光强度敏感,引入2,2-二吡啶基可增强Tb(III)三元稀土配合物的荧光。三元络合物的最强特征荧光发射强度是二元络合物的9.36倍。还测量了配合物的磷光光谱和荧光寿命。

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