Department of Chemistry, College of Sciences, Shanghai University, 99 Shangda Road, Shanghai 200444, China.
J Phys Chem B. 2010 Sep 30;114(38):12234-41. doi: 10.1021/jp1054606.
The acid-base equilibrium in acid (phenylphosphonic acid, methylsulfonic acid, phosphoric acid, hydrochloric acid, acetic acid, and sulfuric acid)-benzimidazole (BIm) complexes was studied by (1)H NMR spectra, FTIR spectra, and density functional theory (DFT) calculations. The DFT optimized structures of the acid-BIm complexes, the vibrational frequencies of the acidic protons, and potential profiles were applied to study the equilibrium between the acids and BIm. In gas phase, it was shown that the strong sulfuric acid could completely protonate BIm and the other acids could only incompletely protonate BIm. When the polarizable continuum model of DMSO was applied, it was shown that all the acids could completely protonate BIm, except the weak acetic acid and phenylphosphonic acid. Furthermore, the potential profile for the PPoA-BIm shows double-well structure facilitating the free movement of the acidic proton between PPoA and BIm. If an explicit solvent molecule of DMSO was included into an acid-BIm complex, significant changes in equilibrium between acid and BIm are observed. The potential profiles for the MSA-BIm and HCl-BIm show very flat bottom wells, facilitating the free movement of proton between the acid and BIm. These calculations were consistent with the (1)H NMR chemical shifts of the immobile protons of the benzimidazole ring in DMSO-d(6) and the FTIR spectra of the acid-BIm complexes.
通过(1)H NMR 光谱、FTIR 光谱和密度泛函理论(DFT)计算研究了酸(苯膦酸、甲基磺酸、磷酸、盐酸、乙酸和硫酸)-苯并咪唑(BIm)配合物中的酸碱平衡。应用 DFT 优化的酸-BIm 配合物结构、酸性质子的振动频率和势能曲线研究了酸和 BIm 之间的平衡。在气相中,表明强硫酸可以完全质子化 BIm,而其他酸只能不完全质子化 BIm。当应用 DMSO 的极化连续体模型时,表明所有酸都可以完全质子化 BIm,除了弱乙酸和苯膦酸。此外,PPoA-BIm 的势能曲线呈现双势阱结构,有利于酸性质子在 PPoA 和 BIm 之间自由移动。如果将 DMSO 的显式溶剂分子包含在酸-BIm 配合物中,则观察到酸和 BIm 之间平衡的显著变化。MSA-BIm 和 HCl-BIm 的势能曲线显示非常平坦的底部势阱,有利于质子在酸和 BIm 之间自由移动。这些计算与在 DMSO-d(6)中苯并咪唑环的不可移动质子的(1)H NMR 化学位移和酸-BIm 配合物的 FTIR 光谱一致。