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首页> 外文期刊>Journal of Applied Polymer Science >New polymer syntheses. IX. Synthesis and properties of new conducting polyazomethine polymers containing main chain cycloalkanone and pyridine moieties
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New polymer syntheses. IX. Synthesis and properties of new conducting polyazomethine polymers containing main chain cycloalkanone and pyridine moieties

机译:新的聚合物合成。九。含主链环烷酮和吡啶部分的新型导电聚偶氮甲碱聚合物的合成与性能

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摘要

Novel polyazomethines containing cycloalkanones or pyridine moieties were synthesized by the polycondensation of 2,5-bis(m-aminobenzylidene)cyclopentanone (BMAP, IV), 2,6-bis(m-aminobenzylidene)cyclohexanone (BMAH, V), 2,6-bis(p-aminobenzylidene)cyclohexanone (BPAH, VI), and 2,6-bis(m-aminostyryl)pyridine (BMAS, WI) diamines with terephthalaldehyde in EtOH at 25 degrees C. These polymers were yellow to orange in color, had reduced viscosities up to 1.42 dL/g, and had electric conductivities as high as 10(-11)-10(-12) S cm(-1). All th, polyazomethines were insoluble in common organic solvents but dissolved completely in concentrated sulfuric acid. However, they were readily hydrolyzed in concentrated H2SO4. X-ray diffraction diagrams showed that the crystallinities of the polyazomethines were low. These azomethine polymers showed high thermal and thermooxidative stability and exhibited no appreciable decomposition up to 400 degrees C in air. The electronic spectra of the polymers indicated a large bathochromic shift of the pi-pi* absorption band (similar to 360 nm) that was due to the presence of C=N bonds in the polymer main chain. Doping with iodine dramatically raised the conductivity and produced dark brown to black colored semiconductive polymers with a maximum conductivity on the order of 10(-7) S cm(-1) Furthermore, the morphology of selected examples of the four polyazomethines was examined by scanning electron microscopy. (C) 2000 John Wiley & Sons, Inc. [References: 31]
机译:通过2,5-双(间氨基亚苄基)环戊酮(BMAP,IV),2,6-双(间氨基亚苄基)环己酮(BMAH,V),2,6的缩聚反应合成了含有环烷酮或吡啶部分的新型聚偶氮甲亚胺。 -二(对氨基苄叉基)环己酮(BPAH,VI)和2,6-双(间氨基苯乙烯基)吡啶(BMAS,WI)二胺与对苯二甲醛在25°C的乙醇溶液中。这些聚合物的颜色为黄色至橙色,的粘度降低到1.42 dL / g,电导率高达10(-11)-10(-12)S cm(-1)。所有聚偶氮甲亚胺均不溶于普通有机溶剂,但完全溶于浓硫酸中。但是,它们很容易在浓H2SO4中水解。 X射线衍射图表明,聚偶甲亚胺的结晶度低。这些偶氮甲碱聚合物显示出高的热和热氧化稳定性,并且在空气中直至400摄氏度都没有表现出明显的分解。聚合物的电子光谱表明,由于聚合物主链中存在C = N键,导致pi-pi *吸收带发生大的红移(类似于360 nm)。碘掺杂可显着提高电导率,并产生深棕色至黑色的半导电聚合物,最大电导率约为10(-7)S cm(-1)。此外,通过扫描检查了四种聚偶氮甲胺的选定实例的形貌电子显微镜。 (C)2000 John Wiley&Sons,Inc. [参考:31]

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