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首页> 外文期刊>Revue roumaine de chimie >ELECTROCHEMICAL SYNTHESIS AND CHARACTERIZATIONS OF NEW NANOCOMPOSITE ELECTRODEPOSITION ON Co67Cr29W4 ALLOY SUBSTRATE
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ELECTROCHEMICAL SYNTHESIS AND CHARACTERIZATIONS OF NEW NANOCOMPOSITE ELECTRODEPOSITION ON Co67Cr29W4 ALLOY SUBSTRATE

机译:CO67CR29W4合金基质新型纳米复合电沉积的电化学合成与特写

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摘要

In this study, galvanostatic electrodeposition techniques were employed for the achieved of new composite polymer: polypyrrole - sodium dioctyl sulfosuccinate/poly N-ethylaniline (PPY-AOT/PNEA) coatings on the Co67Cr29W4 alloy electrode surface. The PPY-AOT/PNEA coating has been synthesized on the Co67Cr29W4 alloy electrode by galvanostatic deposition from aqueous solutions 0.1 M NEA, 0.1M PY, 0.01 M AOT and 0.5 M H_2SO_4 solution at various current densities (lmA/cm~2, 2mA/cm~2 and 8mA/cm~2) in different molar ratio. The sodium dioctyl sulfosuccinate (AOT) as a dopant ion used in electropolymerization process be able to a significant influence on the electrochemical activity of the composite polymer. The polymeric composite coatings were characterized by cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and scanning electron microscopy (SEM) techniques. The results denoted that the electroactive behaviors of the composite polymer mainly depend on the molar ratio of monomers, the applied density current and times of electrodeposition. It has been established that the cobalt based alloy substrate had a meaningful influence on the electrochemical activity of the polypyrrole and poly(N-ethylaniline) composite films and that as in the existence of polymeric film, anodization of these modified electrodes obtained in constitution of an oxides complex film and polymeric layers together. All of the composite films were a very promising electrode material for application in supercapacitor, corrosion protection coatings or sensor employments.
机译:在该研究中,采用GALVANOSTATIC电沉积技术来实现新的复合聚合物:聚吡咯 - 二辛基磺基酸盐/聚正乙基苯胺(PPY-AOT / PNEA)涂层在CO67CR29W4合金电极表面上。通过从水溶液0.1m Nea,0.1m Py,0.01M Aot和0.5M H_2SO_4溶液以各种电流密度(LMA / cm〜2,2mA / CM〜2和8mA / cm〜2)以不同的摩尔比。作为电聚合过程中使用的掺杂剂离子的二辛基磺基琥珀酸钠(AOT)能够对复合聚合物的电化学活性产生显着影响。聚合物复合涂层的特征在于循环伏安法(CV),电化学阻抗谱(EIS)和扫描电子显微镜(SEM)技术。结果表示复合聚合物的电活性行为主要取决于单体的摩尔比,施加的密度电流和电沉积时间。已经确定,基于钴基合金基质对萘酚和聚(N-乙基苯胺)复合膜的电化学活性具有有意义的影响,并且如在聚合物膜的存在中,在构造中获得的这些改性电极的阳极氧化将氧化物复合膜和聚合物层在一起。所有复合膜都是非常有前途的电极材料,用于在超级电容器,腐蚀保护涂层或传感器中的应用。

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