Laboratoire d'Electrochimie Moléculaire, UMR CNRS 7591, Université Paris Diderot, Bât. Lavoisier, 15 rue Jean-Antoine de Baif, 75205 Paris Cedex 13, France.
Org Biomol Chem. 2011 Jun 7;9(11):4064-9. doi: 10.1039/c1ob05090g. Epub 2011 Apr 15.
Taking pyridine as a prototypal example of biologically important nitrogen bases involved in proton-coupled electron transfers, it is shown with the example of the photochemically triggered oxidation of phenol by Ru(III)(bpy)(3) that this proton acceptor partakes in a concerted pathway whose kinetic characteristics can be extracted from the overall kinetic response. The treatment of these data, implemented by the results of a parallel study carried out in heavy water, allowed the determination of the intrinsic kinetic characteristics of this proton acceptor. Comparison of the reorganization energies and of the pre-exponential factors previously derived for hydrogen phosphate and water (in water) as proton acceptors suggests that, in the case of pyridine, the proton charge is delocalized over a primary shell of water molecules firmly bound to the pyridinium cation.
以吡啶作为涉及质子耦合电子转移的生物重要含氮碱基的典型例子,通过 Ru(III)(bpy)(3)光化学引发的苯酚氧化的例子表明,这个质子受体参与了协同途径,其动力学特征可以从整体动力学响应中提取出来。通过在重水中进行的平行研究的结果来处理这些数据,确定了这个质子受体的固有动力学特征。比较以前作为质子受体的磷酸氢盐和水(在水中)的重组能和指数前因子表明,在吡啶的情况下,质子电荷分散在与吡啶阳离子紧密结合的水分子的主壳层上。