Boese A Daniel, Martin Jan M L
Department of Organic Chemistry, Weizmann Institute of Science, IL-76100 Rehovot, Israel.
J Chem Phys. 2004 Aug 22;121(8):3405-16. doi: 10.1063/1.1774975.
A density functional theory exchange-correlation functional for the exploration of reaction mechanisms is proposed. This functional, denoted BMK (Boese-Martin for Kinetics), has an accuracy in the 2 kcal/mol range for transition state barriers but, unlike previous attempts at such a functional, this improved accuracy does not come at the expense of equilibrium properties. This makes it a general-purpose functional whose domain of applicability has been extended to transition states, rather than a specialized functional for kinetics. The improvement in BMK rests on the inclusion of the kinetic energy density together with a large value of the exact exchange mixing coefficient. For this functional, the kinetic energy density appears to correct "back" the excess exact exchange mixing for ground-state properties, possibly simulating variable exchange.
提出了一种用于探索反应机理的密度泛函理论交换相关泛函。这种泛函记为BMK(用于动力学的博泽-马丁泛函),对于过渡态能垒的精度在2千卡/摩尔范围内,但与之前此类泛函的尝试不同,这种提高的精度并非以牺牲平衡性质为代价。这使其成为一种通用泛函,其适用范围已扩展到过渡态,而不是一种专门用于动力学的泛函。BMK的改进在于包含了动能密度以及较大值的精确交换混合系数。对于这种泛函,动能密度似乎能“修正”基态性质中过量的精确交换混合,可能模拟了可变交换。