Aziz Saadullah G, Osman Osman I, Elroby Shaaban A, Hilal Rifaat H
Chemistry Department, Faculty of Science, King Abdulaziz University, P.O. Box 80203, Jeddah 21589, Saudi Arabia.
Chemistry Department, Faculty of Science, University of Khartoum, P.O. Box 321, Khartoum 11111, Sudan.
Int J Mol Sci. 2015 Nov 4;16(11):26347-62. doi: 10.3390/ijms161125959.
The gas-phase thermal tautomerization reaction between imidazole-4-acetic (I) and imidazole-5-acetic (II) acids was monitored using the traditional hybrid functional (B3LYP) and the long-range corrected functionals (CAM-B3LYP and ωB97XD) with 6-311++G** and aug-cc-pvdz basis sets. The roles of the long-range and dispersion corrections on their geometrical parameters, thermodynamic functions, kinetics, dipole moments, Highest Occupied Molecular Orbital-Lowest Unoccupied Molecular Orbital (HOMO-LUMO) energy gaps and total hyperpolarizability were investigated. All tested levels of theory predicted the preference of I over II by 0.750-0.877 kcal/mol. The origin of predilection of I is assigned to the H-bonding interaction (nN8→σ*O14-H15). This interaction stabilized I by 15.07 kcal/mol. The gas-phase interconversion between the two tautomers assumed a 1,2-proton shift mechanism, with two transition states (TS), TS1 and TS2, having energy barriers of 47.67-49.92 and 49.55-52.69 kcal/mol, respectively, and an sp³-type intermediate. A water-assisted 1,3-proton shift route brought the barrier height down to less than 20 kcal/mol in gas-phase and less than 12 kcal/mol in solution. The relatively high values of total hyperpolarizability of I compared to II were interpreted and discussed.
使用传统杂化泛函(B3LYP)以及长程校正泛函(CAM - B3LYP和ωB97XD),并结合6 - 311++G*和aug - cc - pvdz基组,监测了咪唑 - 4 - 乙酸(I)和咪唑 - 5 - 乙酸(II)之间的气相热互变异构反应。研究了长程和色散校正对其几何参数、热力学函数、动力学、偶极矩、最高占据分子轨道 - 最低未占据分子轨道(HOMO - LUMO)能隙以及总超极化率的作用。所有测试的理论水平都预测I比II更具优势,优势为0.750 - 0.877千卡/摩尔。I的偏好起源归因于氢键相互作用(nN8→σO14 - H15)。这种相互作用使I稳定了15.07千卡/摩尔。两种互变异构体之间的气相相互转化假定为1,2 - 质子转移机制,有两个过渡态(TS),即TS1和TS2,其能垒分别为47.67 - 49.92千卡/摩尔和49.55 - 52.69千卡/摩尔,还有一个sp³型中间体。一条水辅助的1,3 - 质子转移途径使气相中的能垒高度降至低于20千卡/摩尔,在溶液中低于12千卡/摩尔。对I与II相比总超极化率的相对较高值进行了解释和讨论。