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单核三齿二氧四乙酸钴(II)配合物的合成、结构、性质及在金表面的固定化和从 H+离子中电催化产生氢气。

Synthesis, structure, properties and immobilization on a gold surface of the monoribbed-functionalized tris-dioximate cobalt(II) clathrochelates and an electrocatalytic hydrogen production from H+ ions.

机构信息

A. N. Nesmeyanov Institute of Organoelement Compounds of the Russian Academy of Sciences, 119991 Moscow, Russia.

出版信息

Dalton Trans. 2012 May 28;41(20):6078-93. doi: 10.1039/c2dt12513g. Epub 2012 Mar 28.

Abstract

The cycloaddition of the mono- and dichloroglyoximes to the cobalt(II) bis-α-benzyldioximate afforded the cobalt(II) mono- and dichloroclathrochelates in moderate yields (40-60%). These complexes undergo nucleophilic substitution of their reactive chlorine atoms with aliphatic amines, alcohols and thiolate anions. In the case of ethylenediamine and 1,2-ethanedithiol, only the macrobicyclic products with α,α'-N(2)- and α,α'-S(2)-alicyclic six-numbered ribbed fragments were obtained. The cobalt(II) cage complexes with terminal mercapto groups were synthesized using aliphatic dithiols. The crystal and molecular structures of the six cobalt(II) clathrochelates were obtained by X-ray diffraction. Their CoN(6)-coordination polyhedra possess a geometry intermediate between a trigonal prism and a trigonal antiprism, and the encapsulated cobalt(II) ions are shifted from their centres due to the structural Jahn-Teller effect with the Co-N distances varying significantly (by 0.10-0.26 Å). The electrochemistry of the complexes obtained was studied by cyclic voltammetry (CV). The anodic waves correspond to the quasi-reversible Co(2+/3+) oxidations, whereas the cathodic ranges contain the quasi-reversibile waves assigned to the Co(2+/+) reductions; all the cobalt(i)-containing clathrochelate anions formed are stable in the CV time scale. The electrocatalytic properties of the cobalt complexes obtained were studied in the production of hydrogen from H(+) ions: the addition of HClO(4) resulted in the formation of the same catalytic cathodic reduction Co(2+/+) waves. The controlled-potential electrolysis with gas chromatography analysis confirmed the production of H(2) in high Faraday yields. The efficiency of this electrocatalytic process was enhanced by an immobilization of the complexes with terminal mercapto groups on a surface of the working gold electrode.

摘要

单氯和二氯乙二肟与钴(II)双-α-苄叉二恶唑配合物的环加成反应以中等产率(40-60%)得到钴(II)单氯和二氯笼形配合物。这些配合物的反应性氯原子可与脂肪族胺、醇和硫醇阴离子发生亲核取代反应。在乙二胺和 1,2-乙二硫醇的情况下,仅得到具有α,α'-N(2)-和α,α'-S(2)-脂环六元棱柱状片段的大环产物。使用脂肪族二硫醇合成了具有末端巯基的钴(II)笼状配合物。通过 X 射线衍射获得了六个钴(II)笼形配合物的晶体和分子结构。它们的 CoN(6)-配位多面体具有介于三角棱柱和三角反棱柱之间的几何形状,由于结构 Jahn-Teller 效应,被包封的钴(II)离子从其中心偏移,Co-N 距离变化显著(相差 0.10-0.26 Å)。通过循环伏安法(CV)研究了配合物的电化学性质。阳极波对应于准可逆的 Co(2+/3+)氧化,而阴极范围包含了归因于 Co(2+/+)还原的准可逆波;在 CV 时间尺度内,所有形成的钴(I)含笼形螯合阴离子都是稳定的。研究了所得到的钴配合物在 H(+)离子产生氢气中的电催化性质:加入 HClO(4)导致形成相同的催化阴极还原 Co(2+/+)波。通过控制电位电解和气相色谱分析证实了 H(2)的高法拉第产率的产生。通过将具有末端巯基的配合物固定在工作金电极的表面上,增强了该电催化过程的效率。

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