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铅(II)-槲皮素配合物的分子和电子结构的计算与光谱表征

Computational and spectroscopic characterization of the molecular and electronic structure of the Pb(II)-quercetin complex.

作者信息

Cornard J P, Dangleterre L, Lapouge C

机构信息

LASIR, CNRS UMR 8516, Université des Sciences et Technologies de Lille, Bât C5-59655 Villeneuve d'Ascq Cedex, France.

出版信息

J Phys Chem A. 2005 Nov 10;109(44):10044-51. doi: 10.1021/jp053506i.

Abstract

The interactions of lead(II) ion with a polyhydroxylated flavonoid, the quercetin molecule, were investigated in methanol solution. The quercetin/metal stoichiometries and equilibrium stability constants for metal binding to quercetin have been determined by UV-vis spectroscopy combined with chemometrics methods. The 2:1, 1:2, and predominant 1:1 species are formed in solution. Among the three potential sites of chelation present in the quercetin structure, the catechol function presents the highest complexation power toward Pb(II), in opposition with previous results found for Al(III) complexation. This result has been confirmed by the good agreement of the experimental and theoretical features for both the electronic and vibrational spectra of the 1:1 complex. DT-DFT calculations show that the bathochromic shift of the long-wavelength band of the UV-vis spectra, that occurs upon complexation, is due to a ligand-to-metal charge transfer. The molecular structure of the ligand is not much modified by the coordination of lead at the level of the catecholate.

摘要

在甲醇溶液中研究了铅(II)离子与多羟基黄酮(槲皮素分子)的相互作用。通过紫外可见光谱结合化学计量学方法确定了槲皮素/金属化学计量比以及金属与槲皮素结合的平衡稳定性常数。溶液中形成了2:1、1:2和主要的1:1物种。在槲皮素结构中存在的三个潜在螯合位点中,邻苯二酚官能团对Pb(II)具有最高的络合能力,这与先前发现的Al(III)络合结果相反。1:1络合物的电子光谱和振动光谱的实验特征与理论特征的良好一致性证实了这一结果。密度泛函理论(DT-DFT)计算表明,络合时紫外可见光谱长波带的红移是由于配体到金属的电荷转移。在邻苯二酚水平上,铅的配位对配体的分子结构影响不大。

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