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Influence of the Electropolymerization Parameters on the Doping Level of Polybithiophene Films Grown in Acetonitrile and Water

机译:电聚合参数对乙腈和水中生长的多辛丙基薄膜掺杂水平的影响

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Electropolymerized polythiophene (PTh) is a conductive polymer with low crystallinity, excellent thermal stability, and good conductivity. Its applications strongly depend on the electrochemical conditions employed during film growth, the nature of the doping counterion, the substituents attached to the thiophene ring, and the reaction medium employed. Electropolymerization of bithiophene (BTh) to produce polybithiophene (PBTh) can be successful both in aqueous and organic media. The objective of the present study was to compare the influence of the electropolymerization conditions on the doping level (δ) of PBTh films. A high doping level was reached using ACN as solvent (% δ = 25.58% ± 0.77), while in water the electropolymerization was strongly inhibited. The study of in-situ conductance during electropolymerization in ACN showed a conductance increase with the number of cycles, while conductance did not increase in water. This electropolymerization inhibition is attributed to a nucleophilic attack by the H_2O molecule on the cationic species formed during the oxidation of PBTh.
机译:电聚合聚噻吩(PTH)是具有低结晶度,优异的热稳定性和良好导电性的导电聚合物。其应用强烈取决于薄膜生长期间采用的电化学条件,掺杂抗蚀剂的性质,附着于噻吩环的取代基和所用的反应介质。在水性和有机培养基中,二硫代素(Bth)产生聚二苯基乙烯(PBTH)的电聚合可以成功。本研究的目的是比较电聚合条件对PBTH薄膜掺杂水平(δ)的影响。使用ACN达到高掺杂水平,作为溶剂(%δ= 25.58%±0.77),而在水中强烈抑制电聚合。在ACN中的电聚合过程中原位电导的研究显示,随着循环的次数,导流增加,而导电不会增加水。该电聚合抑制归因于H_2O分子对PBTH氧化期间形成的阳离子物种上的亲核侵蚀。

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