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首页> 外文期刊>Electrochimica Acta >Methanol electrooxidation on glassy carbon electrode modified with bimetallic Ni(II)Co(II)salen complexes encapsulated in mesoporous zeolite A
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Methanol electrooxidation on glassy carbon electrode modified with bimetallic Ni(II)Co(II)salen complexes encapsulated in mesoporous zeolite A

机译:介孔沸石A包覆的双金属Ni(II)Co(II)salen配合物修饰的玻碳电极上的甲醇电氧化

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摘要

Nickel and cobalt salen complexes were simultaneously encapsulated in mesoporous zeolite A by flexible ligand method. The prepared catalyst NiCosalenA was investigated for its electrochemical behavior and electrocatalytic activity towards the oxidation of methanol on glassy carbon electrode in 0.1 M NaOH solution. Upon encapsulation in zeolite A, the NiCosalen complex exhibits the typical cyclic voltammetric response, which can be anticipated for the Ni2+Co2+(Salen)(OH)(2)/Ni3+Co3+(Salen) O(OH) redox couple. It also showed much higher electrocatalytic activity towards the oxidation of methanol than pure NisalenA, due to a synergetic effect that may originate from the interaction of Ni(salen) and Co(salen) and/or the formation of dinuclear salen complexes in adjacent or appropriate sites in a nano-cage through the lattice oxygen of the zeolitic host. The mechanism of electrocatalytic oxidation of methanol on NiCosalenA modified electrode was proposed to be EC process. In both the chronoamperometric and chronocoulometric studies, the reaction of methanol electrooxidation followed a Cottrellian behavior and similar diffusion coefficients (D) of methanol were found to be 3.82 x 10 (7)cm(2) s (1) and 3.91 x 10 (7)cm(2) s (1), respectively. The catalytic rate constant (k(cat)) was also calculated to be 5.52 x 10(5)cm(3) mol (1) s (1) in the range of 0.005-2.0 M of methanol. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过挠性配体方法将镍和钴萨伦络合物同时包封在中孔沸石A中。研究了制备的催化剂NiCosalenA在0.1 M NaOH溶液中对玻璃碳电极上甲醇氧化的电化学行为和电催化活性。在封装在沸石A中后,NiCosalen配合物表现出典型的循环伏安响应,这对于Ni2 + Co2 +(Salen)(OH)(2)/ Ni3 + Co3 +(Salen)O(OH)氧化还原对是可以预期的。它也表现出比纯NisalenA高得多的对甲醇氧化的电催化活性,这是由于可能来自Ni(salen)和Co(salen)的相互作用和/或在相邻或适当的位置形成双核Salen络合物的协同效应。通过沸石主体的晶格氧在纳米笼中定位。 NiCosalenA修饰电极上甲醇的电催化氧化机理被认为是EC工艺。在计时电流法和计时容量法研究中,甲醇电氧化反应均遵循Cottrellian行为,甲醇的相似扩散系数(D)被发现为3.82 x 10(7)cm(2)s(1)和3.91 x 10(7 )cm(2)s(1)。在甲醇0.005-2.0 M的范围内,催化速率常数(k(cat))也计算为5.52 x 10(5)cm(3)mol(1)s(1)。 (C)2015 Elsevier Ltd.保留所有权利。

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