Khaliullin Rustam Z, Bell Alexis T, Head-Gordon Martin
Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.
J Chem Phys. 2008 May 14;128(18):184112. doi: 10.1063/1.2912041.
A new method based on absolutely localized molecular orbitals (ALMOs) is proposed to measure the degree of intermolecular electron density delocalization (charge transfer) in molecular complexes. ALMO charge transfer analysis (CTA) enables separation of the forward and backward charge transfer components for each pair of molecules in the system. The key feature of ALMO CTA is that all charge transfer terms have corresponding well defined energetic effects that measure the contribution of the given term to the overall energetic stabilization of the system. To simplify analysis of charge transfer effects, the concept of chemically significant complementary occupied-virtual orbital pairs (COVPs) is introduced. COVPs provide a simple description of intermolecular electron transfer effects in terms of just a few localized orbitals. ALMO CTA is applied to understand fundamental aspects of donor-acceptor interactions in borane adducts, synergic bonding in classical and nonclassical metal carbonyls, and multiple intermolecular hydrogen bonds in a complex of isocyanuric acid and melamine. These examples show that the ALMO CTA results are generally consistent with the existing conceptual description of intermolecular bonding. The results also show that charge transfer and the energy lowering due to charge transfer are not proportional to each other, and some interesting differences emerge which are discussed. Additionally, according to ALMO CTA, the amount of electron density transferred between molecules is significantly smaller than charge transfer estimated from various population analysis methods.
提出了一种基于绝对定域分子轨道(ALMOs)的新方法,用于测量分子复合物中分子间电子密度离域(电荷转移)的程度。ALMO电荷转移分析(CTA)能够分离系统中每对分子的正向和反向电荷转移成分。ALMO CTA的关键特征在于,所有电荷转移项都具有相应明确的能量效应,这些效应衡量了给定项对系统整体能量稳定化的贡献。为简化电荷转移效应的分析,引入了具有化学意义的互补占据-虚拟轨道对(COVPs)的概念。COVPs仅用几个定域轨道就提供了分子间电子转移效应的简单描述。将ALMO CTA应用于理解硼烷加合物中供体-受体相互作用的基本方面、经典和非经典金属羰基化合物中的协同键合以及异氰尿酸与三聚氰胺复合物中的多个分子间氢键。这些例子表明,ALMO CTA的结果通常与现有的分子间键合概念描述一致。结果还表明,电荷转移以及电荷转移导致的能量降低并非相互成比例,并且出现了一些有趣的差异并进行了讨论。此外,根据ALMO CTA,分子间转移的电子密度量明显小于从各种布居分析方法估计的电荷转移量。