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双原子微分重叠的自洽极化忽略:应用于水团簇

Self-consistent polarization neglect of diatomic differential overlap: application to water clusters.

作者信息

Chang Daniel T, Schenter Gregory K, Garrett Bruce C

机构信息

Chemical and Materials Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

J Chem Phys. 2008 Apr 28;128(16):164111. doi: 10.1063/1.2905230.

Abstract

Semiempirical self-consistent field (SCF) methods based on the neglect of diatomic differential overlap (NDDO) formalism have the ability to treat the formation and breaking of chemical bonds but have been found to poorly describe hydrogen bonding and weak electrostatic complexes. In contrast, most empirical potentials are not able to describe bond breaking and formation but have the ability to add missing elements of hydrogen bonding by using classical electrostatic interactions. We present a new method which combines aspects of both NDDO-based SCF techniques and classical descriptions of polarization to describe the diffuse nature of the electronic wavefunction in a self-consistent manner. We develop the "self-consistent polarization neglect of diatomic differential overlap" (SCP-NDDO) theory with the additional description of molecular dispersion developed as a second-order perturbation theory expression. The current study seeks to model water-water interactions as a test case. To this end, we have parametrized the method to accurate ab initio complete basis set limit estimates of small water cluster binding energies of Xantheas and co-workers [J. Chem. Phys. 116, 1493 (2002); 120, 823 (2004)]. Overall agreement with the ab initio binding energies (n=2-6, and 8) is achieved with a rms error of 0.19 kcal/mol. We achieve noticeable improvements in the structure, vibrational frequencies, and energetic predictions of water clusters (n< or =21) relative to standard NDDO-based methods.

摘要

基于忽略双原子微分重叠(NDDO)形式的半经验自洽场(SCF)方法有能力处理化学键的形成和断裂,但已发现其对氢键和弱静电复合物的描述较差。相比之下,大多数经验势无法描述键的断裂和形成,但有能力通过使用经典静电相互作用来补充氢键中缺失的元素。我们提出了一种新方法,该方法结合了基于NDDO的SCF技术的各个方面以及极化的经典描述,以自洽的方式描述电子波函数的弥散性质。我们发展了“自洽极化忽略双原子微分重叠”(SCP-NDDO)理论,并将分子色散的额外描述发展为二阶微扰理论表达式。当前的研究旨在将水-水相互作用作为一个测试案例进行建模。为此,我们已将该方法参数化,以精确到Xantheas及其同事对小水团簇结合能的从头算完全基组极限估计[《化学物理杂志》116, 1493 (2002); 120, 823 (2004)]。与从头算结合能(n = 2 - 6和8)总体达成一致,均方根误差为0.19 kcal/mol。相对于基于标准NDDO的方法,我们在水团簇(n≤21)的结构、振动频率和能量预测方面取得了显著改进。

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