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首页> 外文期刊>Journal of Solid State Electrochemistry >Electrochemical behavior of Ni(II) incorporated in zeolite Y-modified carbon electrode: application for electrocatalytic oxidation of methanol in alkaline solution
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Electrochemical behavior of Ni(II) incorporated in zeolite Y-modified carbon electrode: application for electrocatalytic oxidation of methanol in alkaline solution

机译:沸石Y修饰碳电极中Ni(II)的电化学行为:在碱性溶液中甲醇的电催化氧化中的应用

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Nickel ions were incorporated in NaY zeolite according to cation exchange mechanism. Then NiY zeolite was used as modifier for preparation of modified carbon paste electrode. The electrochemical behavior of NiY-modified carbon paste electrode (NiY/CPE) was studied in alkaline solution using cyclic voltammetry method. Ability of different electrodes containing NiY/CPE, Ni-NiY/CPE, Ni-NaY/CPE, and Ni/CPE for electrocatalytic oxidation of methanol was compared (three last electrodes prepared by open circuit accumulation of Ni(II) ions on the surface of NiY/CPE, NaY/CPE, and bare CPE, respectively). Results show that Ni-NiY/CPE is best catalyst for the electrochemical oxidation of methanol in alkaline solution and both process of earlier Ni ion incorporation through cation exchange in NaY zeolite and open circuit accumulation of Ni ion on the surface of electrode are essential to have good catalyst. Effect of graphite–zeolite ratio on electrocatalytic current was studied and 3:1 ratio of graphite–zeolite was selected as optimum ratio for preparing electrode. Ni-NiY/CPE has very good stability toward the methanol oxidation in concentration range of 0.005 to 0.5 M. Finally, using chronoamperometric method, the catalytic rate constant (k) for methanol was found to be 1.56 × 104 cm3 mol−1 s−1.
机译:根据阳离子交换机理,将镍离子掺入NaY沸石中。然后将NiY沸石用作改性剂,以制备改性碳糊电极。采用循环伏安法研究了碱性溶液中NiY / CPE电极的电化学行为。比较了包含NiY / CPE,Ni-NiY / CPE,Ni-NaY / CPE和Ni / CPE的不同电极对甲醇进行电催化氧化的能力(通过在表面上开路累积Ni(II)离子制备的最后三个电极) NiY / CPE,NaY / CPE和裸CPE)。结果表明,Ni-NiY / CPE是甲醇在碱性溶液中电化学氧化的最佳催化剂,通过NaY沸石中的阳离子交换较早地引入Ni离子的过程以及电极表面Ni离子的开路积累都是必不可少的。良好的催化剂。研究了石墨-沸石比例对电催化电流的影响,选择石墨-沸石比例为3:1作为制备电极的最佳比例。 Ni-NiY / CPE在0.005至0.5 M的浓度范围内对甲醇氧化具有很好的稳定性。最后,通过计时安培法,发现甲醇的催化速率常数(k)为1.56×10 4 cm 3 mol -1 s -1

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