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电子控制 Fe-Fe 键的质子化速率。

Electronic control of the protonation rates of Fe-Fe bonds.

机构信息

Energy Materials Laboratory, School of Chemistry, University of East Anglia , Norwich Research Park, Norwich NR4 7TJ, United Kingdom.

出版信息

J Am Chem Soc. 2014 Sep 17;136(37):13038-44. doi: 10.1021/ja506693m. Epub 2014 Sep 2.

Abstract

Protonation at metal-metal bonds is of fundamental interest in the context of the function of the active sites of hydrogenases and nitrogenases. In diiron dithiolate complexes bearing carbonyl and electron-donating ligands, the metal-metal bond is the highest occupied molecular orbital (HOMO) with a "bent" geometry. Here we show that the experimentally measured rates of protonation (kH) of this bond and the energy of the HOMO as measured by the oxidation potential of the complexes (E1/2(ox)) correlate in a linear free energy relationship: ln kH = ((F(c - βE1/2(ox)))/(RT)), where c is a constant and β is the dimensionless Brønsted coefficient. The value of β of 0.68 is indicative of a strong dependence upon energy of the HOMO: measured rates of protonation vary over 6 orders of magnitude for a change in E1/2(ox) of ca. 0.55 V (ca. 11 orders of magnitude/V). This relationship allows prediction of protonation rates of systems that are either too fast to measure experimentally or that possess additional protonation sites. It is further suggested that the nature of the bridgehead in the dithiolate ligand can exert a stereoelectronic influence: bulky substituents destabilize the HOMO, thereby increasing the rate of protonation.

摘要

在氢化酶和固氮酶活性中心功能的背景下,金属-金属键的质子化具有重要意义。在含有羰基和给电子配体的二铁二硫配合物中,金属-金属键是最高占据分子轨道(HOMO),具有“弯曲”的几何形状。在这里,我们表明,实验测量的该键的质子化速率(kH)和配合物氧化电势(E1/2(ox))测量的 HOMO 能量之间以线性自由能关系相关:ln kH = ((F(c - βE1/2(ox)))/(RT)),其中 c 是常数,β 是无维布仑斯特系数。β 值为 0.68 表明对 HOMO 能量的强烈依赖:对于 E1/2(ox)的约 0.55 V 的变化,质子化速率的测量值变化超过 6 个数量级(约 11 个数量级/V)。该关系允许预测质子化速率,这些系统要么太快而无法进行实验测量,要么具有额外的质子化位点。进一步表明,二硫代配合物配体的桥接头的性质可以施加立体电子影响:大的取代基使 HOMO 不稳定,从而增加质子化速率。

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