Kiefer Philip M, Pines Ehud, Pines Dina, Hynes James T
Department of Chemistry and Biochemistry, University of Colorado , Boulder, Colorado 80309-0215, United States.
J Phys Chem B. 2014 Jul 17;118(28):8330-51. doi: 10.1021/jp501815j. Epub 2014 May 29.
A theory is presented for the proton stretch vibrational frequency νAH for hydrogen (H-) bonded complexes of the acid dissociation type, that is, AH···B ⇔ A(-)···HB(+)(but without complete proton transfer), in both polar and nonpolar solvents, with special attention given to the variation of νAH with the solvent's dielectric constant ε. The theory involves a valence bond (VB) model for the complex's electronic structure, quantization of the complex's proton and H-bond motions, and a solvent coordinate accounting for nonequilibrium solvation. A general prediction is that νAH decreases with increasing ε largely due to increased solvent stabilization of the ionic VB structure A(-)···HB(+) relative to the neutral VB structure AH···B. Theoretical νAH versus 1/ε slope expressions are derived; these differ for polar and nonpolar solvents and allow analysis of the solvent dependence of νAH. The theory predicts that both polar and nonpolar slopes are determined by (i) a structure factor reflecting the complex's size/geometry, (ii) the complex's dipole moment in the ground vibrational state, and (iii) the dipole moment change in the transition, which especially reflects charge transfer and the solution phase proton potential shapes. The experimental proton frequency solvent dependence for several OH···O H-bonded complexes is successfully accounted for and analyzed with the theory.
本文提出了一种关于酸解离型氢键复合物(即AH···B ⇔ A(-)···HB(+),但无完全质子转移)中质子拉伸振动频率νAH的理论,该理论适用于极性和非极性溶剂,并特别关注νAH随溶剂介电常数ε的变化。该理论涉及复合物电子结构的价键(VB)模型、复合物质子和氢键运动的量子化以及考虑非平衡溶剂化的溶剂坐标。一个普遍的预测是,νAH随ε的增加而降低,这主要是由于相对于中性VB结构AH···B,离子VB结构A(-)···HB(+)的溶剂稳定性增加。推导了理论νAH与1/ε斜率的表达式;这些表达式在极性和非极性溶剂中有所不同,可用于分析νAH对溶剂的依赖性。该理论预测,极性和非极性斜率均由以下因素决定:(i)反映复合物大小/几何形状的结构因子;(ii)基态振动状态下复合物的偶极矩;(iii)跃迁中的偶极矩变化,这尤其反映了电荷转移和溶液相质子势的形状。该理论成功地解释并分析了几种OH···O氢键复合物的实验质子频率对溶剂的依赖性。