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A study of thermal, optical and electrical properties of new branched triphenylamine-based polyazomethines

机译:新型支链三苯胺基聚偶氮甲亚胺的热,光和电性能研究

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摘要

A series of branched aromatic polyazomethines have been obtained by high temperature solution polycondensation of 4,4',4"-triformyltriphenylamine with 3,3'-dimethoxybenzidine with different feed molar ratio. For three polymers additional condensation of chain end groups with monofunctional monomers such as 4-formyltriphenylamine or 2-naphthylamine was carried out. Moreover, two model compounds were prepared and investigated for comparison with branched polymers. The structures of polymers and models were characterized by means FT1R, ~1H, ~(13)C NMR spectroscopy, elemental analysis and gel permeation chromatography (GPC). UV-vis properties of the thin films of the polymers and compounds were investigated on the glass substrate. Eg of the branched polymers was found about 2.47 eV. UV-vis and FTIR spectroscopy for iodine doped compounds were investigated. Doping decreased the value of Eg of the branched polyazomethines to about 1.71 eV. Refractive index (n) for branched polyazomethines was found about 1.97, while for the doped compounds was a little higher (~2.48). Absorption (UV-vis) properties of the doped with iodine branched imines were investigated additionally after heating in different temperatures from 50 to 200 C. Intensity of photoluminescence of branched imines in relation to 9,10-diphenylanthracene was found in the range 0.2-1.0% and 2.7-43.7% in dependence on the excitation wavelengths. Current-voltage (I-V) measurements were performed on ITO/TiO_2/polymer/Al, ITO/polymer/Alq_3/Al and ITO/TiO_2/polymer/Alq_3/Al devices in the dark and during irradiation with light (under illumination 1000W/m~2). The sol-gel technique was applied to prepared TiO_2 layer. TiO_2 layers and devices were investigated by Atomic Force Microscopy (AFM). Moreover, properties of these branched polymers were compared with the linear polyazomethine based on 3,3'-dimethoxybenzidine and 4,4-diformyltriphenylamine.
机译:通过4,4',4“-三甲酰基三苯胺与3,3'-二甲氧基联苯胺的不同进料摩尔比的高温溶液缩聚反应,获得了一系列支链芳族聚偶氮甲亚胺。对于三种聚合物,链端基与单官能单体的额外缩合反应例如用4-甲酰基三苯胺或2-萘胺制备了两种模型化合物,并与支链聚合物进行了比较,用FT1R,〜1H,〜(13)C NMR谱对聚合物和模型的结构进行了表征,元素分析和凝胶渗透色谱法(GPC);研究了聚合物和化合物薄膜在玻璃基板上的紫外可见光性能;发现支链聚合物的分子质量约为2.47 eV;掺杂碘的紫外可见光和FTIR光谱掺杂使支化聚偶氮甲碱的Eg值降至约1.71 eV。支化聚偶氮甲碱的折射率(n)wa s约为1.97,而掺杂化合物则稍高(〜2.48)。在50至200 C的不同温度下加热后,还对掺杂的碘支链亚胺的吸收(紫外可见)性能进行了研究。发现支链亚胺相对于9,10-二苯基蒽的光致发光强度为0.2-1.0 %和2.7-43.7%,取决于激发波长。在ITO / TiO_2 /聚合物/ Al,ITO /聚合物/ Alq_3 / Al和ITO / TiO_2 /聚合物/ Alq_3 / Al器件在黑暗中和光照期间(在1000W / m照度下)进行电流-电压(IV)测量〜2)。将溶胶-凝胶技术应用于制备的TiO_2层。通过原子力显微镜(AFM)研究了TiO_2层和器件。此外,将这些支链聚合物的性能与基于3,3′-二甲氧基联苯胺和4,4-二甲酰基三苯胺的线性聚偶氮甲碱进行了比较。

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