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室温 X 射线辐照 β-D-果糖单晶的电子顺磁共振和密度泛函理论研究。

Electron magnetic resonance and density functional theory study of room temperature X-irradiated β-D-fructose single crystals.

机构信息

Department of Solid State Sciences, Ghent University, Krijgslaan 281-S1, B-9000 Gent, Belgium.

出版信息

J Phys Chem A. 2010 Dec 2;114(47):12417-26. doi: 10.1021/jp107777v. Epub 2010 Nov 4.

Abstract

Stable free radical formation in fructose single crystals X-irradiated at room temperature was investigated using Q-band electron paramagnetic resonance (EPR), electron nuclear double resonance (ENDOR), and ENDOR induced EPR (EIE) techniques. ENDOR angular variations in the three main crystallographic planes allowed an unambiguous determination of 12 proton HFC tensors. From the EIE studies, these hyperfine interactions were assigned to six different radical species, labeled F1-F6. Two of the radicals (F1 and F2) were studied previously by Vanhaelewyn et al. [Vanhaelewyn, G. C. A. M.; Pauwels, E.; Callens, F. J.; Waroquier, M.; Sagstuen, E.; Matthys, P. J. Phys. Chem. A 2006, 110, 2147.] and Tarpan et al. [Tarpan, M. A.; Vrielinck, H.; De Cooman, H.; Callens, F. J. J. Phys. Chem. A 2009, 113, 7994.]. The other four radicals are reported here for the first time and periodic density functional theory (DFT) calculations were used to aid their structural identification. For the radical F3 a C3 carbon centered radical with a carbonyl group at the C4 position is proposed. The close similarity in HFC tensors suggests that F4 and F5 originate from the same type of radical stabilized in two slightly different conformations. For these radicals a C2 carbon centered radical model with a carbonyl group situated at the C3 position is proposed. A rather exotic C2 centered radical model is proposed for F6.

摘要

室温下辐照果糖单晶时稳定自由基的形成采用 Q 波段电子顺磁共振(EPR)、电子核双共振(ENDOR)和 ENDOR 诱导的 EPR(EIE)技术进行了研究。在三个主要的晶体学平面上的 ENDOR 角变化允许明确确定 12 个质子 HFC 张量。从 EIE 研究中,这些超精细相互作用被分配到六个不同的自由基物种,标记为 F1-F6。其中两个自由基(F1 和 F2)先前由 Vanhaelewyn 等人研究过。[Vanhaelewyn,G. C. A. M.;Pauwels,E.;Callens,F. J.;Waroquier,M.;Sagstuen,E.;Matthys,P. J. Phys. Chem. A 2006, 110, 2147。]和 Tarpan 等人。[Tarpan,M. A.;Vrielinck,H.;De Cooman,H.;Callens,F. J. J. Phys. Chem. A 2009, 113, 7994。]其他四个自由基是首次报道的,并使用周期性密度泛函理论(DFT)计算来帮助它们的结构鉴定。对于自由基 F3,提出了一种 C3 碳原子中心自由基,其羰基位于 C4 位置。HFC 张量的高度相似表明,F4 和 F5 源自两种略有不同构象的相同类型的自由基。对于这些自由基,提出了一种 C2 碳原子中心自由基模型,其羰基位于 C3 位置。对于 F6,提出了一种相当奇特的 C2 中心自由基模型。

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