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Oligoaniline intermediates in the aniline-peroxydisulfate system

机译:苯胺-过二硫酸盐体系中的低聚苯胺中间体

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Chemical oxidative polymerization of aniline using peroxydisulfate oxidant in aqueous pH 2.5-10.0 buffers yields electrically insulating brown powders that are believed to be mixtures of Michael-type adducts of benzoquinone monoimine and aniline at various stages of hydrolysis. A spectroscopically similar product is formed when solid 1,4-benzoquinone is added to an aqueous solution of aniline at room temperature in the absence of peroxydisulfate. This suggests that the peroxydisulfate oxidant in the aniline/S_2O_8~(2-) system provides a pathway for the formation of benzoquinone monoimine as an intermediate. Benzoquinone monoimine intermediate could be formed as a result of a Boyland-Sims rearrangement of aniline proceeding via the intermediacy of p-aminophenyl sulfate. Benzoquinone monoimine undergoes a series of conjugate 1,4-Michael-type addition/reoxidation/coupling steps with aniline or p-aminophenyl sulfate yielding the oligoaniline product. The precipitate that is isolated is also in the midst of two simultaneous pH dependent hydrolysis reactions: (i) hydrolysis of the imine groups to quinone, and (ii) hydrolysis of arylsulfates to phenols. The ratio of hydrolysis in each case was determined by the C/N ratio and sulfur elemental analysis values yielding analytical data that is consistent with experimentally determined values and also with our proposed reaction scheme. These findings offer a rationale for the high C/N ratios (>6.0) frequently observed in these systems while tracing the genesis of the residual sulfur in the product to unhydrolyzed arylsulfate. The oligoaniline product has previously been reported to have a novel poly-aza structure consisting of continuously linked -N-N-N- bonds, and alternately also reported to consist of phenazine-type linkages. This study is consistent with the latter and describes a pathway to phenazine coupling through a second and third stage hydrolysis of the arylsulfate and reoxidation with peroxydisulfate. There is no pathway for the formation of linear -N-N-N- linkages in the aniline/benzoquinone adduct and the striking similarity between its spectroscopic properties and the aniline/S_2O_8~(2-) adduct suggests that it is not a preferred pathway under these experimental conditions.
机译:在水溶液pH 2.5-10.0的缓冲液中使用过二硫酸盐氧化剂对苯胺进行化学氧化聚合,可得到电绝缘的棕色粉末,该粉末被认为是苯醌单亚胺和苯胺在水解的各个阶段的迈克尔型加合物的混合物。当在室温下在不存在过氧二硫酸盐的情况下将固体1,4-苯醌加入苯胺水溶液中时,会形成光谱相似的产物。这表明苯胺/ S_2O_8〜(2-)体系中的过氧二硫酸盐氧化剂为形成中间体苯醌单亚胺提供了途径。苯醌的Boyland-Sims重排可通过对氨基苯基硫酸盐的中间体进行,从而形成苯醌单亚胺中间体。苯醌单亚胺经过一系列与苯胺或对氨基苯基硫酸盐的共轭1,4-Michael型加成/重氧化/偶联步骤,生成低聚苯胺产物。分离出的沉淀物也在两个同时的pH依赖性水解反应中:(i)亚胺基水解为醌,和(ii)芳基硫酸盐水解为酚。在每种情况下,水解的比率均由C / N比和硫元素分析值确定,得出的分析数据与实验确定的值以及我们提出的反应方案相符。这些发现为在这些系统中经常观察到的高C / N比(> 6.0)提供了理论依据,同时追踪了产品中残留硫的生成为未水解的芳基硫酸盐。以前已经报道过低聚苯胺产物具有由连续连接的-N-N-N-键组成的新型聚氮杂结构,并且还可以选择由吩嗪型键组成。该研究与后者一致,并且描述了通过芳基硫酸盐的第二和第三阶段水解以及用过氧二硫酸盐再氧化来实现吩嗪偶联的途径。在苯胺/苯醌加合物中没有形成线性-NNN-键的途径,并且其光谱性质与苯胺/ S_2O_8〜(2-)加合物之间惊人的相似性表明在这些实验条件下它不是优选的途径。

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