Berger Raphael J F, Schoiber Jürgen, Monkowius Uwe
Fachbereich für Materialwissenschaften und Physik, Paris-Lodron Universität Salzburg , Jakob-Haringer-Str. 2a, A-5020 Salzburg, Austria.
Institute of Inorganic Chemistry, Johannes Kepler University Linz , Altenbergerstr. 69, 4040 Linz, Austria.
Inorg Chem. 2017 Jan 17;56(2):956-961. doi: 10.1021/acs.inorgchem.6b02613. Epub 2016 Dec 29.
Gold is an electron-rich metal with a high electronegativity comparable to that of sulfur. Hence, hydrogen bonds of the Au(I)···H-E (E = electronegative element) type should be possible, but their existence is still under debate. Experimental results are scarce and often contradictory. As guidance for possible preparative work, we have theoretically investigated (ppyH)Au(SPh) (ppy = 2-phenylpyridine) bearing two monoanionic ligands which are not strongly electronegative at the same time to further increase the charge density on the gold(I) atom. The protonated pyridine nitrogen atom in ppy is geometrically ideally suited to place a proton in close proximity to the gold atom in a favorable geometry for a classical hydrogen bond arrangement. Indeed, the results of the calculations indicate that the hydrogen bonded conformation of (ppyH)Au(SPh) represents a minimum geometry with bond metrics in the expected range for medium-strong hydrogen bonds [r(N-H) = 1.043 Å, r(H···Au) = 2.060 Å, a(N-H···Au) = 141.4°]. The energy difference between the conformer containing the H···Au bond and another conformer without a hydrogen bond amounts to 7.8 kcal mol, which might serve as an estimate of the hydrogen bond strength. Spectroscopic properties were calculated, yielding further characteristics of such hydrogen bonded gold species.
金是一种富电子金属,其电负性较高,与硫相当。因此,Au(I)···H-E(E = 电负性元素)类型的氢键应该是可能存在的,但它们的存在仍存在争议。实验结果很少且常常相互矛盾。作为可能的制备工作的指导,我们从理论上研究了带有两个单阴离子配体的(ppyH)Au(SPh)(ppy = 2-苯基吡啶),这两个配体同时并非强电负性,以进一步增加金(I)原子上的电荷密度。ppy中质子化的吡啶氮原子在几何结构上非常适合将一个质子放置在靠近金原子的位置,形成有利于经典氢键排列的几何结构。实际上,计算结果表明(ppyH)Au(SPh)的氢键构象代表了一种最小几何结构,其键参数在中等强度氢键的预期范围内[r(N-H) = 1.043 Å,r(H···Au) = 2.060 Å,a(N-H···Au) = 141.4°]。含有H···Au键的构象与另一个没有氢键的构象之间的能量差为7.8 kcal mol,这可以作为氢键强度的一个估计。计算了光谱性质,得出了这种氢键金物种的进一步特征。