Institut für Chemie und Biochemie, Freie Universität Berlin, Takustrasse 3, D-14195 Berlin, Germany.
J Am Chem Soc. 2011 May 25;133(20):7897-908. doi: 10.1021/ja201113a. Epub 2011 May 2.
Combined low-temperature NMR/UV-vis spectroscopy (UVNMR), where optical and NMR spectra are measured in the NMR spectrometer under the same conditions, has been set up and applied to the study of H-bonded anions A··H··X(-) (AH = 1-(13)C-2-chloro-4-nitrophenol, X(-) = 15 carboxylic acid anions, 5 phenolates, Cl(-), Br(-), I(-), and BF(4)(-)). In this series, H is shifted from A to X, modeling the proton-transfer pathway. The (1)H and (13)C chemical shifts and the H/D isotope effects on the latter provide information about averaged H-bond geometries. At the same time, red shifts of the π-π* UV-vis absorption bands are observed which correlate with the averaged H-bond geometries. However, on the UV-vis time scale, different tautomeric states and solvent configurations are in slow exchange. The combined data sets indicate that the proton transfer starts with a H-bond compression and a displacement of the proton toward the H-bond center, involving single-well configurations A-H···X(-). In the strong H-bond regime, coexisting tautomers A··H···X(-) and A(-)···H··X are observed by UV. Their geometries and statistical weights change continuously when the basicity of X(-) is increased. Finally, again a series of single-well structures of the type A(-)···H-X is observed. Interestingly, the UV-vis absorption bands are broadened inhomogeneously because of a distribution of H-bond geometries arising from different solvent configurations.
已建立并应用低温 NMR/UV-vis 光谱学(UVNMR),其中在相同条件下在 NMR 光谱仪中测量光学和 NMR 光谱,用于研究 H 键合阴离子 A··H··X(-)(AH = 1-(13)C-2-氯-4-硝基苯酚,X(-) = 15 种羧酸阴离子、5 种酚盐、Cl(-)、Br(-)、I(-)和 BF(4)(-))。在该系列中,H 从 A 转移到 X,模拟质子转移途径。(1)H 和 (13)C 化学位移以及后者的 H/D 同位素效应提供了关于平均氢键几何形状的信息。同时,观察到 π-π*UV-vis 吸收带的红移,其与平均氢键几何形状相关。然而,在 UV-vis 时间尺度上,不同的互变异构态和溶剂构型处于缓慢交换中。组合数据集表明,质子转移始于氢键压缩和质子向氢键中心的位移,涉及单阱构型 A-H···X(-)。在强氢键区,通过 UV 观察到共存的互变异构体 A··H···X(-)和 A(-)···H··X。当 X(-)的碱性增加时,它们的几何形状和统计权重连续变化。最后,再次观察到一系列类型为 A(-)···H-X 的单阱结构。有趣的是,由于不同溶剂构型引起的氢键几何形状分布,UV-vis 吸收带不均匀地变宽。