Department of Applied Chemistry, SV National Institute of Technology (SVNIT), Surat, Gujrat, India.
J Mol Model. 2012 May;18(5):1993-2001. doi: 10.1007/s00894-011-1214-1. Epub 2011 Aug 30.
This work presents a computational study on the molecular structure and tautomeric equilibria of a novel Schiff base L derived from pyridoxal (PL) and o-phenylenediamine by using the density functional method B3LYP with basis sets 6-31 G(d,p), 6-31++G(d,p), 6-311 G(d,p) and 6-311++G(d,p). The optimized geometrical parameters obtained by B3LYP/6-31 G(d,p) method showed the best agreement with the experimental values. Tautomeric stability study of L inferred that the enolimine form is more stable than its ketoenamine form in both gas phase and solution. However, protonation of the pyridoxal nitrogen atom (LH) have accelerated the formation of ketoenamine form, and therefore, both ketoenamine and enolimine forms could be present in acidic media.
这项工作通过使用密度泛函方法 B3LYP 结合基组 6-31G(d,p)、6-31++G(d,p)、6-311G(d,p) 和 6-311++G(d,p),对一种新型席夫碱 L(由吡哆醛(PL)和邻苯二胺合成)的分子结构和互变异构平衡进行了计算研究。B3LYP/6-31G(d,p) 方法得到的优化几何参数与实验值吻合得最好。L 的互变异构稳定性研究表明,在气相和溶液中,烯醇亚胺形式比其酮亚胺形式更稳定。然而,吡哆醛氮原子的质子化(LH)加速了酮亚胺形式的形成,因此,在酸性介质中可能同时存在酮亚胺和烯醇亚胺形式。