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Synthesis and Identification of A Hyperbranched Polymer of Tris(8-hydroxyquinoline) Aluminum Linked with Ethylene Glycol

机译:三乙二醇连接三(8-羟基喹啉)铝的超支化聚合物的合成及鉴定

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In this paper the authors discribed the convergent synthesis of a novel hyperbranched polymer,tris(8-hydroxyquinoline) aluminum (Alq3) linked with ethylene glycol,and the indentification of the polymer by UV/vis spectra,photoluminescence spctra(PL),1H NMR spectra,element analysis (EA),differential scanning calorimetry (DSC),gel permeation chromatography (GPC),thermal gravimetric analysis (TGA),Cyclic voltammetry (CV),etc..By introducing Alq3 into the hyperbranched polymer,which was connected with alkoxy chain,the electron injection and transport properties were improved.The maximum absorption peak of the polymer is 58nm blue-shifted,but the emission peak of the polymer is 32nm red-shifted to Alq3 in chloroform soltion.The optical energy band-gap estimated from the absorption edges is 2.845eV.These optical characters of it indicated that the operation,connecting Alq3 with ethylene glycol,could increase the energy band-gap but make the photos easier to transfer between the HOMO and LUMO energy levels.
机译:本文在与乙二醇连接的新型超抗原聚合物,Tris(8-羟基喹啉)铝(Alq3)的收敛合成中断,并通过UV / Vis光谱,光致发光SPCTRA(PL),1H NMR缩进聚合物光谱,元素分析(EA),差分扫描量热法(DSC),凝胶渗透色谱(GPC),热重分析(TGA),循环伏安法(CV)等,将ALQ3引入到超支聚合物中,与烷氧基链,电子注射和运输性质得到改善。聚合物的最大吸收峰是58nm的蓝移,但聚合物的排放峰是氯仿溶液中的32nm的红色移位。估计光能带隙从吸收边缘是2.845EV。这表明其光学特性表明,将Alq3与乙二醇连接的操作可以增加能量带 - 间隙,但使照片更容易在同性恋和卢比之间转移能量水平。

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