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气相中黄酮类化合物的电子离解及其与代谢途径的可能相似性。

Gas-phase dissociative electron attachment to flavonoids and possible similarities to their metabolic pathways.

机构信息

Università di Bologna, Dipartimento di Chimica G. Ciamician, via, Selmi 2, 40126 Bologna, Italy.

出版信息

Phys Chem Chem Phys. 2013 Feb 7;15(5):1588-600. doi: 10.1039/c2cp43379f.

Abstract

The gas-phase empty-level structures and formation of anion states via resonance attachment of low-energy electrons to the flavonoids naringenin (III), quercetin (IV) and myricetin (V) and the smaller reference molecules chromone (I) and flavone (II) are investigated experimentally for the first time. Dissociative electron attachment spectroscopy (DEAS) is used to measure the fragment anion currents generated through dissociative decay channels of the molecular anions of compounds I–V, detected with a mass filter as a function of the incident electron energy in the 0–14 eV energy range. Due to the insufficient volatility of flavonoids III–V, the energies of vertical electron attachment associated with temporary occupation of the lower-lying virtual orbitals are measured with electron transmission spectroscopy (ETS) only in the smaller reference molecules I and II. The experimental findings are interpreted with the support of appropriate density functional theory calculations with the B3LYP functional. The experimental vertical electron attachment energies measured in the ET spectra of I and II are compared with the orbital energies of the neutral molecules scaled using an empirically calibrated linear equation. The vertical and adiabatic electron affinities are evaluated at the B3LYP/6-31+G(d) level as the anion/neutral total energy difference. The latter theoretical method is also used for evaluation of the most stable conformers of the neutral molecules, O–H bond dissociation energies and thermodynamic energy thresholds for production of the anion fragments observed in the DEA spectra. A possible role played by loss of an H(2) molecule from the parent molecular anion in vivo in the mitochondrial respiratory chain is briefly discussed.

摘要

首次通过低能电子与黄酮类化合物橙皮素(III)、槲皮素(IV)和杨梅素(V)以及较小的参考分子色酮(I)和黄酮(II)的共振附加,研究了气相空能级结构和阴离子态的形成。使用解离电子附加光谱(DEAS)测量通过化合物 I-V 的分子阴离子的离解衰变通道产生的碎片阴离子电流,通过质量过滤器作为入射电子能量在 0-14 eV 能量范围内的函数进行检测。由于黄酮类化合物 III-V 的挥发性不足,仅在较小的参考分子 I 和 II 中通过电子传输光谱(ETS)测量与临时占据较低虚拟轨道相关的垂直电子附加的能量。实验结果通过使用 B3LYP 函数的适当密度泛函理论计算得到解释。在 I 和 II 的 ET 光谱中测量的实验垂直电子附加能量与使用经验校准线性方程缩放的中性分子轨道能量进行比较。垂直和绝热电子亲和力在 B3LYP/6-31+G(d)水平作为阴离子/中性总能量差进行评估。后一种理论方法还用于评估中性分子的最稳定构象、O-H 键离解能和在 DEA 光谱中观察到的阴离子碎片的热力学能量阈值。简要讨论了在线粒体呼吸链中母体分子阴离子体内失去一个 H(2)分子可能起的作用。

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