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(甘氨酰)(n)甘氨酸(n = 1 - 3)与Co⁺和Co²⁺的配位作用

Coordination of (glycyl)(n)glycine (n = 1-3) to Co+ and Co2+.

作者信息

Constantino Erika, Rimola Albert, Sodupe Mariona, Rodríguez-Santiago Luis

机构信息

Departament de Química, Universitat Autònoma de Barcelona, Bellaterra 08193, Spain.

出版信息

J Phys Chem A. 2009 Aug 6;113(31):8883-92. doi: 10.1021/jp901179t.

Abstract

This paper analyses the interaction of Co+ (d8, 1G, and 3F) and Co2+ (d7, 4F) cations with (glycyl)(n)glycine (n = 1-3) oligomers. The structure, relative energies, and binding energies of the complexes formed have been theoretically determined by means of density functional methods. For all Co+ complexes the ground spin state is the triplet one and the most stable structures show tricoordinated geometries. In contrast, for Co2+ systems the lowest energy structures are tricoordinated (n = 1), tetracoordinated (n = 2), and pentacoordinated (n = 3). For both cobalt cations, interaction energies increase with the peptide length. Differences in the coordination properties of the ligands are discussed according to their length as well as to the electronic configuration of the metal cation, and results are compared to those previously obtained for the analogous Cu(+/2+) systems. The IR spectra of the most stable and low energy conformers have been simulated, and a discussion of the main vibrational features is provided.

摘要

本文分析了Co⁺(d⁸,¹G和³F)和Co²⁺(d⁷,⁴F)阳离子与(甘氨酰)(n)甘氨酸(n = 1 - 3)低聚物的相互作用。通过密度泛函方法从理论上确定了所形成配合物的结构、相对能量和结合能。对于所有Co⁺配合物,基态自旋态为三重态,最稳定的结构呈现三配位几何构型。相反,对于Co²⁺体系,能量最低的结构是三配位(n = 1)、四配位(n = 2)和五配位(n = 3)。对于两种钴阳离子,相互作用能均随肽链长度增加而增大。根据配体长度以及金属阳离子的电子构型,讨论了配体配位性质的差异,并将结果与之前类似的Cu⁺/²⁺体系所得结果进行了比较。模拟了最稳定和低能量构象体的红外光谱,并对主要振动特征进行了讨论。

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