Craig Stephanie M, Menges Fabian S, Duong Chinh H, Denton Joanna K, Madison Lindsey R, McCoy Anne B, Johnson Mark A
Sterling Chemistry Laboratory, Yale University, New Haven, CT 06525.
Department of Chemistry, University of Washington, Seattle, WA 98195.
Proc Natl Acad Sci U S A. 2017 Jun 13;114(24):E4706-E4713. doi: 10.1073/pnas.1705089114. Epub 2017 May 31.
We report the vibrational spectra of the hydronium and methyl-ammonium ions captured in the C binding pocket of the 18-crown-6 ether ionophore. Although the NH stretching bands of the CHNH ion are consistent with harmonic expectations, the OH stretching bands of HO are surprisingly broad, appearing as a diffuse background absorption with little intensity modulation over 800 cm with an onset ∼400 cm below the harmonic prediction. This structure persists even when only a single OH group is present in the HDO isotopologue, while the OD stretching region displays a regular progression involving a soft mode at about 85 cm These results are rationalized in a vibrationally adiabatic (VA) model in which the motion of the HO ion in the crown pocket is strongly coupled with its OH stretches. In this picture, HO resides in the center of the crown in the vibrational zero-point level, while the minima in the VA potentials associated with the excited OH vibrational states are shifted away from the symmetrical configuration displayed by the ground state. Infrared excitation between these strongly H/D isotope-dependent VA potentials then accounts for most of the broadening in the OH stretching manifold. Specifically, low-frequency motions involving concerted motions of the crown scaffold and the HO ion are driven by a Franck-Condon-like mechanism. In essence, vibrational spectroscopy of these systems can be viewed from the perspective of photochemical interconversion between transient, isomeric forms of the complexes corresponding to the initial stage of intermolecular proton transfer.
我们报道了在18-冠-6醚离子载体的C结合口袋中捕获的水合氢离子和甲基铵离子的振动光谱。虽然CHNH离子的NH伸缩带符合谐波预期,但HO的OH伸缩带却出奇地宽,表现为漫射背景吸收,在800 cm范围内强度调制很小,起始位置比谐波预测值低约400 cm。即使在HDO同位素异构体中仅存在单个OH基团时,这种结构仍然存在,而OD伸缩区域显示出涉及约85 cm处软模式的规则进展。这些结果在振动绝热(VA)模型中得到合理解释,其中HO离子在冠醚口袋中的运动与其OH伸缩强烈耦合。在这种情况下,HO在振动零点能级位于冠醚中心,而与激发的OH振动态相关的VA势中的最小值偏离了基态显示的对称构型。这些强烈依赖H/D同位素的VA势之间的红外激发然后解释了OH伸缩多重峰中的大部分展宽。具体而言,涉及冠醚支架和HO离子协同运动的低频运动是由类似弗兰克-康登的机制驱动的。本质上,这些系统的振动光谱可以从对应于分子间质子转移初始阶段的配合物瞬态异构形式之间的光化学相互转换的角度来看待。