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Preparation and characterization of foam-nickel-modified electrode used in electrochemical reductive dechlorination

机译:电化学还原脱氯用泡沫镍修饰电极的制备与表征

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In order to improve the electrocatalytic activity of the electrode used in electrochemical reductive dechlorination, palladium/polymeric pyrrole film (Sodium dodecyl sulfonate)/foam-nickle (Pd/PPy(SLS)/foam-Ni) electrode with high electrocatalytic activity was prepared by electrochemical deposition at ambient temperature, and the effects of sodium dodecyl sulfonate on the electrochemical catalytic activity were studied. The optimum preparation conditions of the Pd/PPy(SLS)/foam-Ni electrode are electrodepositing current density of 7.9 mA/cm 2 and electrodepositing time of 35 min. Cyclic voltammetry results indicate that, compared with that of Pd/PPy/foam-Ni electrode(about -150.36 mA), the hydrogen adsorption peak current value of Pd/PPy(SLS)/foam-Ni electrode is very large, about -205.24 mA. Scanning Electron Microscope (SEM) images reveal that, with the addition of anion surfactant-sodium dodecyl sulfonate, the surface of Pd/PPy(SLS)/foam-Ni electrode presents fine nanometer wire-like configuration. This configuration increased the catalytic sites of electrode surface and made a cheerful prospect of catalytic degradation capability.
机译:为了提高电化学还原脱氯中使用的电极的电催化活性,制备了具有高电催化活性的钯/高分子吡咯膜(十二烷基磺酸钠)/泡沫镍(Pd / PPy(SLS)/泡沫镍)电极。研究了室温下的电化学沉积,以及十二烷基磺酸钠对电化学催化活性的影响。 Pd / PPy(SLS)/泡沫Ni电极的最佳制备条件是电沉积电流密度为7.9 mA / cm 2,电沉积时间为35分钟。循环伏安法结果表明,与Pd / PPy /泡沫镍电极相比(约-150.36 mA),Pd / PPy(SLS)/泡沫镍电极的氢吸附峰值电流值非常大,约为-205.24。嘛。扫描电子显微镜(SEM)图像显示,通过添加阴离子表面活性剂十二烷基磺酸钠,Pd / PPy(SLS)/泡沫-Ni电极的表面呈现出细纳米线状结构。这种构造增加了电极表面的催化部位,并为催化降解能力带来了美好前景。

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