首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >An ESR study of the copper(II)-glycyl-L-higstidien system in aqueous solution by the simultaneous analysis of multi-component spectra.Formation constants and coordination modes
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An ESR study of the copper(II)-glycyl-L-higstidien system in aqueous solution by the simultaneous analysis of multi-component spectra.Formation constants and coordination modes

机译:通过同时分析多组分光谱对水溶液中铜(II)-甘氨酰-L-Higstidien体系进行ESR研究。形成常数和配位模式

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A series of multi-component ESR spectra of fluid aqueous solutions containing glycyl-L-histidine and copper(II) at 1:1 and 20:1 concentration ratios, taken in a circulating system at various pH, have been analysed simultaneously. The isotropic ESR parameters (g-factors, hyperfine coupling constants for the 63Cu and 65Cu isotopes and maximum four non-equivalent MN nuclei, and relaxation parameters) and the formation constants of the various completes ~re optimized. In the acidic region. the new species [CuLHj3 ~, has been shown and the formation of the pH-metrically ideabfied species [Cu LH]2 ~, [CuLl ‘ and [CuLHhas been supported. The coordination in the first three complexes is remini~ent of that in simple dipeptides: it is likely to take place at first by the carboxylate 0, then by the amino N and peptide 0, and them by the amino N, deprotonated peptide N and carboxylate 0 atoms in equatorial positions. respectively, while the imidazole ring remains protonated. In the species [CuLH —she non-protonated imidazole nitrogen displaces the carboxylate oxygen from the equatorial coordination. In the alkaline region of the equimolar solutions the spectra could be described consistently in terms of the formation of four species: three of them, the complex [Cu2L2H — ~] and the two coordination isomers of the complex [CuLH .2[ axe ESR-active, while the tetramer fCu4L4H — ~]4 is ESR-inactive. For the complex [CuLH — j, one of the isomers is the species [CuLH — 1(OH)] —, while the other one has the imidazole ring deprotonated. At ligand excess the region pH 7—10 is dominated by the pH-metrically identified complexes [CuL£l and [CuL2H j-. In these species the first ligand is bound equatonally by the amino, deprotonated peptide and imidazole nitrogen atoms. The second dipeptide is co-ordinated either by the amino nitrogen in equatorial and the peptide oxygen in a,xial position (4N isomer), or vice versa (3N isomer) in both bis complexes
机译:同时分析了在不同pH值的循环系统中以1:1和20:1的浓度比包含glycyl-L-组氨酸和铜(II)的液体水溶液的一系列多组分ESR光谱。各向同性的ESR参数(g因子,63Cu和65Cu同位素的超精细偶合常数以及最多四个非等价MN核以及弛豫参数)和各种形成常数均得到了优化。在酸性区域。已经显示了新物种[CuLHj3〜],并支持了以pH度量的物种[Cu LH] 2〜,[CuLl'和[CuLH]的形成。前三个复合物中的配位与简单的二肽中的配位相似:它可能首先由羧酸盐0,然后由氨基N和肽0以及它们由氨基N,去质子化的肽N和在赤道位置上将0个原子羧酸化。分别,而咪唑环保持质子化。在[CuLH-物种中,她的非质子化的咪唑氮取代了赤道配位的羧酸氧。在等摩尔溶液的碱性区域中,可以用四种物质的形成来一致地描述光谱:其中三种是配合物[Cu2L2H-〜]和配合物[CuLH .2 [ax ESR-]的两个配位异构体活性,而四聚体fCu4L4H-〜] 4是ESR惰性的。对于复合物[CuLH_1,其异构体之一是物种[CuLH_1(OH)]-,而另一个异构体的咪唑环已去质子化。在配体过量时,pH 7-10的区域主要是通过pH度量确定的复合物[CuL £ 1和[CuL2H j-]。在这些物种中,第一个配体与氨基,去质子化的肽和咪唑氮原子等价结合。第二个二肽由赤道中的氨基氮和轴向位置的肽氧(4N异构体)配位,反之亦然(3N异构体)

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