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采用密度泛函理论簇方法对固态鼠李糖自由基的研究。

Study of rhamnose radicals in the solid state adopting a density functional theory cluster approach.

作者信息

Pauwels Ewald, Van Speybroeck Veronique, Waroquier Michel

机构信息

Center for Molecular Modeling, Ghent University, Proeftuinstraat 86, B-9000 Gent, Belgium.

出版信息

J Phys Chem A. 2006 May 25;110(20):6504-13. doi: 10.1021/jp060209k.

Abstract

A theoretical study is performed on the radiation-induced radicals in crystalline alpha-l-rhamnose, using density functional theory (DFT) calculations. Irrespective of earlier structural assignments, a host of possible radical models is examined in search for a structure that accurately reproduces experimental electron paramagnetic resonance (EPR) properties. A cluster approach is followed, incorporating all hydrogen bond interactions between radical and crystalline environment. Hyperfine coupling tensors as well as g tensors are determined and a comparison is made with available experimental data. Three carbon-centered hydroxyalkyl radicals are validated, in accordance with experimental suggestions for their structure. The occurrence of a carbon-centered oxygen anion radical for one of the radical species is rejected on theoretical grounds, and instead an altered hydroxyalkyl structure is suggested. Our cluster calculations are able to determine g and hyperfine tensors for the oxygen-centered alkoxy radical in rhamnose, in accordance with one of the two measurements for this species. For all radical models, quantitative agreement with experimental hyperfine tensors is obtained by performing full cluster DFT calculations. The inclusion of the molecular environment for the determination of this EPR property proved to be essential.

摘要

利用密度泛函理论(DFT)计算,对结晶α-L-鼠李糖中辐射诱导的自由基进行了理论研究。不管早期的结构归属如何,研究了大量可能的自由基模型,以寻找能准确再现实验电子顺磁共振(EPR)性质的结构。采用簇方法,纳入自由基与晶体环境之间的所有氢键相互作用。确定了超精细耦合张量以及g张量,并与现有实验数据进行了比较。根据对其结构的实验建议,验证了三种以碳为中心的羟烷基自由基。从理论角度否定了其中一种自由基物种存在以碳为中心的氧阴离子自由基的情况,而是提出了一种改变的羟烷基结构。我们的簇计算能够根据对该物种的两项测量之一,确定鼠李糖中以氧为中心的烷氧基自由基的g张量和超精细张量。对于所有自由基模型,通过进行全簇DFT计算,与实验超精细张量取得了定量一致。事实证明,纳入分子环境来确定这种EPR性质至关重要。

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