Department of Chemistry and Chemical Engineering, School of Chemistry and Biological Engineering, University of Science and Technology Beijing , Beijing 100083, People's Republic of China.
J Phys Chem A. 2013 Apr 11;117(14):3100-8. doi: 10.1021/jp4010345. Epub 2013 Apr 2.
Bond order is an important concept for understanding the nature of a chemical bond. In this work, we propose a novel definition of bond order, called the Laplacian bond order (LBO), which is defined as a scaled integral of negative parts of the Laplacian of electron density in fuzzy overlap space. Many remarkable features of LBO are exemplified by numerous structurally diverse molecules. It is shown that LBO has a direct correlation with the bond polarity, the bond dissociation energy, and the bond vibrational frequency. The dissociation behavior of LBO of the N-N bond in N2 has been studied. Effects of the basis sets, theoretic methods, and geometrical conformations on LBO have also been investigated. Through comparisons, we discussed in details similarities and discrepancies among LBO, Mayer bond order, natural localized molecular orbital bond order, fuzzy overlap population, and electron density at bond critical points.
键级是理解化学键性质的一个重要概念。在这项工作中,我们提出了一种新的键级定义,称为拉普拉斯键级(LBO),它定义为模糊重叠空间中电子密度拉普拉斯的负部分的标度积分。LBO 的许多显著特征通过许多结构不同的分子得到了例证。结果表明,LBO 与键极性、键离解能和键振动频率直接相关。研究了 N2 中 N-N 键的 LBO 离解行为。还研究了基组、理论方法和几何构象对 LBO 的影响。通过比较,我们详细讨论了 LBO、Mayer 键级、自然局域分子轨道键级、模糊重叠布居和键临界点处电子密度之间的相似和差异。