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首页> 外文期刊>Synthetic Metals >Synthesis, characterization, luminescence properties and thermal studies of polyaniline and polythiophene composites with rare earth terbium(III) complex
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Synthesis, characterization, luminescence properties and thermal studies of polyaniline and polythiophene composites with rare earth terbium(III) complex

机译:稀土ter(III)配合物的聚苯胺和聚噻吩复合材料的合成,表征,发光性质和热学研究

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In situ oxidative polymerization technique has been used to synthesize the conducting polymers of polyaniline, polythiophene and their composites. Rare earth metal complex of terbium(III) is synthesized by refluxing method and characterized by elemental analysis, conductance measurement, FTIR and thermogravimetric analysis. Powder XRD shows polycrystalline nature of dopant (terbium(III) complex) and its distribution in polyaniline and polythiophene matrix is well evident from XRD and SEM. Lattice parameters a,b, c and alpha, beta and gamma have been calculated using powder X software for the dopant as well as the composites. Various parameters like interplanar distance (d), crystallite size (L) and dislocation density (rho) have been also calculated by Bragg's and Scherrer's equations. The calculated d spacing values are in agreement with the experimental d spacing values. Terbium complex shows narrow emission bandwidths in DMSO solution. The good fluorescence of terbium complex might be due to the antenna effect of ligands. The luminescence properties of polymer composite of polyaniline and polythiophene have been investigated by UV-vis and fluorescence spectra. The experimental results of fluorescence show that polyaniline composite emit purple/green fluorescence in N-methyl 2-pyrolidone and polythiophene composite emit also purple/green fluorescence in DMSO solution at room temperature. The good thermal stability and fluorescence property of dopant and polymer composites are very important aspects for their technologic applications as luminescent probes or light emitting diode materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:原位氧化聚合技术已用于合成聚苯胺,聚噻吩及其复合材料的导电聚合物。 reflux的稀土金属配合物是通过回流法合成的,并通过元素分析,电导测量,FTIR和热重分析进行了表征。粉末XRD显示出掺杂剂(ter(III)配合物)的多晶性质,并且通过XRD和SEM可以很好地看出其在聚苯胺和聚噻吩基质中的分布。晶格参数a,b,c和α,β和γ已使用粉末X软件计算出了掺杂剂和复合物。各种参数,如晶面距离(d),微晶尺寸(L)和位错密度(rho)也已通过Bragg和Scherrer方程计算。计算出的d间距值与实验d间距值一致。 complex络合物在DMSO解决方案中显示出窄的发射带宽。 complex配合物的良好荧光可能是由于配体的天线效应。通过紫外可见光谱和荧光光谱研究了聚苯胺和聚噻吩聚合物复合材料的发光性能。荧光的实验结果表明,在室温下,聚苯胺复合物在N-甲基2-吡咯烷酮中发出紫色/绿色荧光,聚噻吩复合物在DMSO溶液中也发出紫色/绿色荧光。掺杂剂和聚合物复合物的良好的热稳定性和荧光性质对于它们作为发光探针或发光二极管材料的技术应用是非常重要的方面。 (C)2015 Elsevier B.V.保留所有权利。

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