Department of Chemistry, University of Malaya, Kuala Lumpur, Malaysia.
J Mol Model. 2012 Dec;18(12):5041-50. doi: 10.1007/s00894-012-1497-x. Epub 2012 Jul 3.
A theoretical study of a series of five glucose based glycolipid crown ethers and their complexes with Na(+) and K(+) was performed using the density functional theory with B3LYP/6-31 G* to obtain the optimized geometrical structures and electronic properties. The local nucleophilicity of the five molecules was investigated using Fukui function, while the global nucleophilicity was calculated from the ionization potential and electron affinity. The structures and coordination of the complexes were studied to identify the best match of the glycolipid crown ethers with cations. In general, it was found that the oxygen atoms pairs O2 and O3 (or O4 and O6) on the sugar ring are constrained from moving toward the cation, which results in a weaker O-cation coordination strength for the oxygen pair compared to the other oxygen atoms in the crown ether ring. The thermodynamic properties of the binding of the complexes and the exchange reaction in gas phase were evaluated. The cation selectivity pattern among the five molecules was in good agreement with the experiment.
采用密度泛函理论中的 B3LYP/6-31G*方法,对一系列基于葡萄糖的五元糖脂冠醚及其与 Na(+)和 K(+)的配合物进行了理论研究,以获得优化的几何结构和电子性质。利用福井函数研究了五个分子的局部亲核性,而从电离势和电子亲合势计算了整体亲核性。研究了配合物的结构和配位情况,以确定糖脂冠醚与阳离子的最佳匹配。一般来说,发现糖环上的氧原子对 O2 和 O3(或 O4 和 O6)受到限制,不能向阳离子移动,这导致氧原子对与冠醚环中其他氧原子相比,与阳离子的配位强度较弱。还评估了配合物结合的热力学性质和气相中的交换反应。五种分子之间的阳离子选择性模式与实验结果吻合良好。