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Conducting polymers prepared by oxidative polymerization: Polyaniline [Review]

机译:通过氧化聚合制备的导电聚合物:聚苯胺[综述]

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Polyaniline (PANI) is one of the most intensively investigated polymers during the last decade. The establishment of the scientific principles allowing regulation of its properties, determining the potential application areas (alternative energy sources and transformers, media for erasable optical information storage, non-linear optics, membranes, etc.) is an important scientific problem, We have shown for the first time that the behavior of this polymer is subject to the same basic principles as the polymerization process itself. Both the polymerization of aniline and the subsequent transformations of polyaniline have to be regarded as typical redox processes, where the direction and establishment of equilibrium are dependent on the oxidation potentials and concentrations of the reactants (and also on pH of the medium, affecting the values of oxidation potential of the reactants). Such an approach allows us to identify the oxidative polymerization of aniline (and presumably of thiophene and pyrrole) as a new area in cationic polymerization, wherein the conditions of initiation, propagation and termination of the chains can be expressed by means of the electrochemical potential of the system. Furthermore, this allows an elucidation of the key problems related to the main types of transformations of this polymer (the so-called oxidative and non-oxidative doping of polyaniline). It also gave us a reason to suggest a novel original classification of the numerous potential application areas of PANI. [References: 216]
机译:聚苯胺(PANI)是最近十年研究最深入的聚合物之一。我们已经表明,建立科学原理以对其性质进行调节,确定潜在的应用领域(替代能源和变压器,可擦除光学信息存储介质,非线性光学,薄膜等),是一个重要的科学问题。首次使这种聚合物的行为与聚合过程本身具有相同的基本原理。苯胺的聚合反应和随后的聚苯胺转化都必须视为典型的氧化还原过程,其中平衡的方向和建立取决于氧化电位和反应物的浓度(以及介质的pH值,影响值)反应物的氧化电位)。这种方法使我们能够将苯胺(大概是噻吩和吡咯)的氧化聚合确定为阳离子聚合的一个新领域,其中链的引发,传播和终止条件可以通过系统。此外,这可以阐明与该聚合物的主要转变类型有关的关键问题(聚苯胺的所谓氧化和非氧化掺杂)。这也给了我们提出PANI众多潜在应用领域的新颖原始分类的理由。 [参考:216]

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