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首页> 外文期刊>Journal of the American Chemical Society >A NEW WATER-SOLUBLE, SELF-DOPING CONDUCTING POLYANILINE FROM POLY(O-AMINOBENZYLPHOSPHONIC ACID) AND ITS SODIUM SALTS - SYNTHESIS AND CHARACTERIZATION
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A NEW WATER-SOLUBLE, SELF-DOPING CONDUCTING POLYANILINE FROM POLY(O-AMINOBENZYLPHOSPHONIC ACID) AND ITS SODIUM SALTS - SYNTHESIS AND CHARACTERIZATION

机译:一种新的水溶性,自掺杂的多胺(邻氨基苯甲磺酸)及其钠盐的合成-合成与表征

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Poly(o-aminobenzylphosphonic acid) and its sodium salts, made by progressive neutralization with NaOH, have been prepared and characterized. Both the hemisodium and monosodium salts are intrinsically self-doped and water-soluble in the conducting form. The key is to control the ionization of the excess acid functions on the polymer chains. XPS results suggest that the polymer is obtained directly in the 43% polyzwitterionic (i.e., self-doped) emeraldine form. The self-doped polymer does not exhibit any conductivity dependence on pH below 6, in marked contrast to the HCl-doped polyanilines. Our structurally well-defined polymer system displays only one set of redox activity over the potential range of -0.2 to 1.2 eV, alluding to the higher stability of the self-doped structure. This is unique and different from other polyaniline systems which show two sets of redox peaks. FTIR spectroscopy provides evidence for strong intra-chain hydrogen bonding while NMR studies conclude that protonated and unprotonated segments of the solvated monosodium polymer are distinct. The lower conductivity (similar to 10(-3) S cm(-1)) obtained is attributed to the decrease in conjugation caused by the large steric effect of the bulky PO3H2 and a significant hydrogen bond interaction between PO2(OH)(-) and NH.+ leading to significant charge-pinning. UV-vis data can be explained by a increased participation of the nitrogen wave function in the HOMO, and thereby the widening of the pi(B) ---> pi(S) band gap. [References: 63]
机译:已经制备并表征了通过NaOH中和而制备的聚(邻氨基苄基膦酸)及其钠盐。半钠盐和一钠盐本质上都是自掺杂的,并且以导电形式是水溶性的。关键是控制聚合物链上过量酸官能团的电离。 XPS结果表明,该聚合物直接以43%的聚两性离子(即自掺杂)的翡翠形式获得。与HCl掺杂的聚苯胺相比,自掺杂的聚合物对低于6的pH值不表现出任何电导率依赖性。我们的结构明确的聚合物系统在-0.2到1.2 eV的电位范围内仅显示出一组氧化还原活性,暗示了自掺杂结构的更高稳定性。这是独特的,与其他具有两组氧化还原峰的聚苯胺系统不同。 FTIR光谱提供了牢固的链内氢键的证据,而NMR研究得出结论,溶剂化一钠聚合物的质子化和非质子化部分截然不同。较低的电导率(类似于10(-3)S cm(-1))归因于大体积PO3H2的大空间效应和PO2(OH)(-)之间显着的氢键相互作用引起的共轭降低和NH。+导致大量电荷固定。 UV-vis数据可以通过增加氮离子在HOMO中的作用来解释,从而可以扩大pi(B)-> pi(S)带隙。 [参考:63]

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