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A FUNCTIONAL MODELING STUDY OF THE CO OXIDATION SITE OF NICKEL CO DEHYDROGENASE

机译:镍钴脱氢酶CO氧化位点的功能模拟研究

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In a functional model study of carbon monoxide dehydrogenase (CODH), a homologous series of Ni(II) complexes with a biologically relevant O, N, S ligand set has been synthesized and characterized. In aqueous solution at room temperature, they are active for CO oxidation by methylviologen (= mv(2+)) to produce CO2. The key features of the reaction are pseudo-first-order dependence on catalyst, CO, H2O, and mv(2+), a sigmoidal rate-pH profile with an inflection point at pH 7.6, and the absence of any H-2 as a product, although H-2 is the exclusive product of the related water gas shift reaction. The proposed mechanism, involving decarboxylation of a Ni-COO- intermediate by mv(2+) in the key step, accounts for all these features. As in CODH itself, CO oxidation is inhibited by both CN- and MeI. O-2 is also a competent electron acceptor in this system because reduced mv(+) is air-sensitive. [References: 44]
机译:在一氧化碳脱氢酶(CODH)的功能模型研究中,已合成并鉴定了具有生物学相关O,N,S配体组的Ni(II)配合物的同源系列。在室温下的水溶液中,它们对甲基紫精(= mv(2+))产生的CO氧化具有活性,可生成CO2。该反应的关键特征是对催化剂,CO,H2O和mv(2+)的拟一阶依赖,在7.6处具有拐点的S型速率-pH分布以及不存在任何H-2作为H-2是相关水煤气变换反应的独家产品,但仍是一种产品。所提出的机制涉及关键步骤中mv(2+)使Ni-COO-中间体脱羧的原因。与CODH本身一样,CN-和MeI均会抑制CO氧化。 O-2也是该系统中有效的电子受体,因为还原的mv(+)对空气敏感。 [参考:44]

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