首页> 外文期刊>Electrochimica Acta >Ion-exchange voltammetry of tris(2,2'-bipyridine) nickel(II), cobalt(II), and Co(salen) at polyestersulfonated ionomer coated electrodes in acetonitrile: Reactivity of the electrogenerated low-valent complexes
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Ion-exchange voltammetry of tris(2,2'-bipyridine) nickel(II), cobalt(II), and Co(salen) at polyestersulfonated ionomer coated electrodes in acetonitrile: Reactivity of the electrogenerated low-valent complexes

机译:乙腈中聚酯磺化离聚物涂层电极上的三(2,2'-联吡啶)镍(II),钴(II)和钴(salen)的离子交换伏安法:电生成的低价络合物的反应性

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The electrochemical behaviour of [Ni(bpy){sub}3(BF{sub}4){sub}2], [Co(bpy){sub}3(BF{sub}4){sub}2], and Co(salen) (where bpy=2,2'-bipyridine, and salen = N, N'-bis(salicylidene)ethylenediamine) is studied at a glassy carbon electrode modified with the poly(estersulfonate) ionomer Eastman AQ 55 in acetonitrile (MeCN). It is shown that the nickel complex is strongly incorporated into the polymer. The reduction of the divalent nickel compound features a two-electron process leading to a nickel(0) species which is released from the coating because of the lack of electrostatic attraction with the ionomer. Yet, the neutral zerovalent nickel-bipyridine complex is reactive towards ethyl 4-iodobenzoate and di-bromocyclohexane despite the presence of the polymer. The activation of the aryl halide occurs through an oxidative addition, whereas, an electron transfer is involved in the presence of the alkyl halide making the catalyst regeneration much faster in the latter case. The electrochemical study of [Co(bpy)3(BF{sub}4){sub}2] shows that incorporation of the cobalt complex into the polymer is efficient, provided excess bpy is used. This excess bpy does not interfere with the electrocatalytic activity of the cobalt complex incorporated in the AQ coating and efficient electrocatalysis is observed towards di-bromocyclohexane and benzyl-bromide as substrates. Finally, replacement of the bpy ligand with the macrocycle N, N'-bis(salicylidene)ethylenediamine, salen, leads to the incorporation of the non-charged Co{sup}(II) (salen) complex into the AQ 55 polymer showing the relevancy of hydrophobic interactions. The reaction between the electrogenerated [Co{sup}I(salen)]{sup}- with 1,2-dibromocyclohexane exhibits a fast inner sphere electron transfer.
机译:[Ni(bpy){sub} 3(BF {sub} 4){sub} 2],[Co(bpy){sub} 3(BF {sub} 4){sub} 2]和Co的电化学行为(salen)(其中bpy = 2,2'-联吡啶,Salen = N,N'-双(水杨基)乙二胺)在乙腈(MeCN)中用聚(磺酸酯)离聚物Eastman AQ 55修饰的玻璃碳电极上进行了研究)。结果表明,镍络合物被牢固地结合到聚合物中。二价镍化合物的还原具有两电子过程,可导致镍(0)物种由于缺乏离聚物的静电吸引而从涂层中释放出来。然而,尽管存在聚合物,中性零价镍-联吡啶络合物对4-碘苯甲酸乙酯和二溴环己烷具有反应性。芳基卤化物的活化通过氧化加成发生,而在烷基卤化物的存在下涉及电子转移,使得在后一种情况下催化剂的再生快得多。 [Co(bpy)3(BF {sub} 4){sub} 2]的电化学研究表明,如果使用过量的bpy,将钴配合物掺入聚合物中是有效的。该过量的bpy不干扰掺入AQ涂层中的钴配合物的电催化活性,并且观察到以二溴环己烷和苄基溴为底物的有效电催化。最后,将bpy配体替换为大环N,N'-双(水杨基)乙二胺,salen,导致不带电荷的Co {sup}(II)(salen)配合物掺入AQ 55聚合物中,表明疏水相互作用的相关性。电产生的[Co {sup} I(salen)] {sup}-与1,2-二溴环己烷之间的反应显示出快速的内球电子转移。

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