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在水-有机溶液中产生的维生素 K1 的氢键二负离子与其氢键半醌阴离子自由基处于平衡状态。

The hydrogen-bonded dianion of vitamin K1 produced in aqueous-organic solutions exists in equilibrium with its hydrogen-bonded semiquinone anion radical.

机构信息

Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371.

出版信息

J Phys Chem B. 2013 Feb 28;117(8):2396-402. doi: 10.1021/jp4003966. Epub 2013 Feb 19.

Abstract

When the quinone, vitamin K1 (VK1), is electrochemically reduced in aqueous-acetonitrile solutions (CH3CN with 7.22 M H2O), it undergoes a two-electron reduction to form the dianion that is hydrogen-bonded with water [VK1(H2O)y(2–)]. EPR and voltammetry experiments have shown that the persistent existence of the semiquinone anion radical (also hydrogen-bonded with water) [VK1(H2O)x(–•)] in aqueous or organic–aqueous solutions is a result of VK1(H2O)y(2–) undergoing a net homogeneous electron transfer reaction (comproportionation) with VK1, and not via direct one-electron reduction of VK1. When 1 mM solutions of VK1 were electrochemically reduced by two electrons in aqueous-acetonitrile solutions, quantitative EPR experiments indicated that the amount of VK1(H2O)x(–•) produced was up to approximately 35% of all the reduced species. In situ electrochemical ATR-FTIR experiments on sequentially one- and two-electron bulk reduced solutions of VK1 (showing strong absorbances at 1664, 1598, and 1298 cm(–1)) in CH3CN containing <0.05 M H2O led to the detection of VK1(–•) with strong absorbances at 1710, 1703, 1593, 1559, 1492, and 1466 cm(–1) and VK1(H2O)y(2–) with strong absorbances at 1372 and 1342 cm(–1).

摘要

当醌类物质、维生素 K1(VK1)在水-乙腈溶液(含 7.22 M H2O 的 CH3CN)中电化学还原时,它经历两个电子的还原,形成与水氢键结合的二阴离子[VK1(H2O)y(2–)]。EPR 和伏安法实验表明,半醌阴离子自由基(也与水氢键结合)[VK1(H2O)x(–•)]在水或有机-水溶剂中持续存在是由于 VK1(H2O)y(2–)与 VK1 发生净均相电子转移反应(歧化)的结果,而不是通过 VK1 的直接单电子还原。当 1mM 的 VK1 在水-乙腈溶液中电化学还原两个电子时,定量 EPR 实验表明,生成的 VK1(H2O)x(–•)的量高达所有还原物种的约 35%。在 CH3CN 中含有<0.05 M H2O 的 VK1 的依次单电子和两电子体还原溶液的原位电化学 ATR-FTIR 实验(在 1664、1598 和 1298 cm(-1)处显示强吸收)导致 VK1(–•)的检测,其在 1710、1703、1593、1559、1492 和 1466 cm(-1)处具有强吸收,VK1(H2O)y(2–)在 1372 和 1342 cm(-1)处具有强吸收。

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