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    • 3. 发明授权
    • Conductive polymeric composite with high electrical activation density
and method for preparing the same
    • 具有高电活化密度的导电聚合物复合材料及其制备方法
    • US5416170A
    • 1995-05-16
    • US66346
    • 1993-05-24
    • Suh B. RheeMyong H. LeeChang J. LeeYong K. Kang
    • Suh B. RheeMyong H. LeeChang J. LeeYong K. Kang
    • C07C13/00C08F2/04C08G61/12C08G73/06C08K5/00C08L39/04C08L41/00C08L43/00C08L65/00H01B1/12H01M4/60C08K5/08
    • H01M4/60C08G61/124C08G73/0611C08K5/0091C08L43/00C08L65/00H01B1/128
    • A conductive polymeric composite with an improved electrical activation density obtained by compounding a ferrocene derivative used as a dopant with a polypyrrole of a conductive polymer and a method for preparing the same. The conductive composite can be produced by use of a chemical method or an electrochemical method. In the case of using the chemical method, pyrrole or its derivative is dissolved in a solution containing a ferrocene derivative, together with one or mixture of ferric trichloride, ammonium persulfate and copper chloride-aluminum chloride. In the case of using the electrochemical method, a solution, in which pyrrole or its derivative is dissolved together with ferrocene derivative, is used, as an electrolytic solution, alone or together with a solution in which an electrolyte of inorganic salt such as ammonium salt, lithium perchloric acid and tetraalkylammonium perchloric acid is dissolved. The composite is a superior conductive composite exhibiting an electrochemical activity by virtue of reversible oxidation-reduction reaction of conductive polymer itself and having a high density of electrochemically active material by virtue of an addition of an electrochemical activity obtained by the oxidation-reduction reaction of ferrocene added as an electrolyte.
    • 通过将用作掺杂剂的二茂铁衍生物与导电聚合物的聚吡咯混合获得的具有改善的电活化密度的导电聚合物复合物及其制备方法。 导电性复合体可以通过使用化学方法或电化学方法来制造。 在使用化学方法的情况下,将吡咯或其衍生物与三氯化铁,过硫酸铵和氯化铜 - 氯化铝的一种或混合物一起溶解在含有二茂铁衍生物的溶液中。 在使用电化学方法的情况下,使用其中吡咯或其衍生物与二茂铁衍生物一起溶解的溶液作为电解液,单独或与其中的无机盐如铵盐的电解质一起 ,高氯酸锂和高氯酸四烷基铵溶解。 复合材料是通过导电聚合物本身的可逆氧化 - 还原反应显示出电化学活性的优异的导电复合材料,并且通过加入通过二茂铁的氧化还原反应获得的电化学活性,并具有高密度的电化学活性材料 作为电解质添加。