Stewart James J P
Stewart Computational Chemistry, 15210 Paddington Circle, Colorado Springs, CO 80921, USA.
J Mol Model. 2007 Dec;13(12):1173-213. doi: 10.1007/s00894-007-0233-4. Epub 2007 Sep 9.
Several modifications that have been made to the NDDO core-core interaction term and to the method of parameter optimization are described. These changes have resulted in a more complete parameter optimization, called PM6, which has, in turn, allowed 70 elements to be parameterized. The average unsigned error (AUE) between calculated and reference heats of formation for 4,492 species was 8.0 kcal mol(-1). For the subset of 1,373 compounds involving only the elements H, C, N, O, F, P, S, Cl, and Br, the PM6 AUE was 4.4 kcal mol(-1). The equivalent AUE for other methods were: RM1: 5.0, B3LYP 6-31G*: 5.2, PM5: 5.7, PM3: 6.3, HF 6-31G*: 7.4, and AM1: 10.0 kcal mol(-1). Several long-standing faults in AM1 and PM3 have been corrected and significant improvements have been made in the prediction of geometries.
文中描述了对NDDO核心-核心相互作用项以及参数优化方法所做的若干修改。这些改变带来了更完整的参数优化,即PM6,进而使得70种元素能够被参数化。4492种物质的计算生成热与参考生成热之间的平均无符号误差(AUE)为8.0千卡/摩尔(-1)。对于仅包含H、C、N、O、F、P、S、Cl和Br元素的1373种化合物子集,PM6的AUE为4.4千卡/摩尔(-1)。其他方法的等效AUE分别为:RM1:5.0,B3LYP 6-31G*:5.2,PM5:5.7,PM3:6.3,HF 6-31G*:7.4,以及AM1:10.0千卡/摩尔(-1)。AM1和PM3中一些长期存在的缺陷已得到纠正,并且在几何结构预测方面有了显著改进。