首页> 外文期刊>Bulletin of the Korean Chemical Society >Electropolymerization Mechanism for Poly(o-phenylenediamine)(PPD) and Its Electrocatalytic Behavior for O2 Reduction
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Electropolymerization Mechanism for Poly(o-phenylenediamine)(PPD) and Its Electrocatalytic Behavior for O2 Reduction

机译:聚(邻苯二胺)(PPD)的电聚合机理及其对O2还原的电催化行为

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o-Phenylenediamine (o-PD) was electropolymerized on glassy carbon electrodes under a potential cycling condition. The resulting polymer films mediated electrons for the reduction of molecular oxygen at pH=1.0. It was found from the RDE, RRDE, and cyclic voltammetry experiments that the modified electrodes reduce oxygen to hydrogen peroxide at about 300 mV lower potential than the bare glassy carbon electrode. The polymer film consisted of more than two components. Among those, only one component was active in oxygen reduction, which was formed mainly in the earlier stage of the electropolymerization. 2,3-Diaminophenazine, a cyclic dimer of o-PD, was also active in the oxygen reduction reaction, from which it was suggested that the active polymeric component has a structural unit similar to the cyclic dimer. Finally, the electropolymerization mechanism for the formation of the active and inactive components has been proposed.
机译:在电位循环条件下,将邻苯二胺(o-PD)在玻璃碳电极上进行电聚合。所得的聚合物膜在pH = 1.0时介导电子以还原分子氧。从RDE,RRDE和循环伏安法实验中发现,改性电极在比裸玻璃碳电极低约300 mV的电势下将氧气还原为过氧化氢。聚合物膜由两种以上的成分组成。其中,只有一种成分对氧还原具有活性,这主要是在电聚合的早期阶段形成的。 2,3-二氨基吩嗪,o-PD的环状二聚体,在氧还原反应中也具有活性,由此表明,活性聚合物组分具有类似于环状二聚体的结构单元。最后,提出了用于形成活性和非活性组分的电聚合机理。

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