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一个短暂但非常弱的给体键:N(2)-BH(3) 的结构、成键和能量性质。

A short yet very weak dative bond: structure, bonding, and energetic properties of N(2)-BH(3).

机构信息

Department of Chemistry, University of Wisconsin - Eau Claire, 105 Garfield Ave., Eau Claire, WI 54702, USA.

出版信息

J Phys Chem A. 2010 Feb 25;114(7):2628-36. doi: 10.1021/jp909059n.

Abstract

The structure, bonding, and energetic properties of the N(2)-BH(3) complex are reported as characterized by density functional theory (DFT) and post-Hartree-Fock (HF) calculations. The equilibrium structure of the complex exhibits a short B-N distance near 1.6 A, comparable to that of a strong acid-base complex like H(3)N-BH(3). However, the binding energy is only 5.7 kcal/mol at the CCSD(T)/6-311+G(2df,2dp) level of theory, which is reminiscent of a weak, nonbonded complex. Natural bond orbital (NBO) and atoms in molecules (AIM) analyses of the electron density from both DFT and post-HF calculations do indicate that the extent of charge transfer and covalent character in the B-N dative bond is only somewhat less than in comparable systems with fairly large binding energies (e.g., H(3)N-BH(3) and OC-BH(3)). Energy decomposition analysis indicates key differences between the N(2), CO, and NH(3) complexes, primarily associated with the natures of the lone pairs involved (sp vs sp(3)) and the donor/acceptor characteristics of the relevant occupied and virtual orbitals, both sigma and pi. Also, CCSD/6-311+G(2df,2dp) calculations indicate that the B-N distance potential is rather anharmonic and exhibits a flat, shelf-like region ranging from 2.1 to 2.5 A that lies about 1.5 kcal/mol above the minimum at 1.67 A. However, this region is more sloped and lies about 2.5 kcal/mol above the equilibrium region according to the CCSD(T)/6-311+G(2df,2dp)//CCSD/6-311+G(2df,2dp) potential. A 1D analysis of the vibrational motion along the B-N stretching coordinate in the CCSD/6-311+G(2df,2dp) potential indicates that the average B-N distance in the ground vibrational state is 1.71 A, about 0.04 A longer than the equilibrium distance. Furthermore, the vibrationally averaged distance obtained via an analysis of the CCSD(T)/6-311+G(2df,2dp)//CCSD/6-311+G(2df,2dp) potential was found to be 0.03 A longer than the CCSD(T)/6-311+G(2df,2dp) minimum.

摘要

本文报道了 N(2)-BH(3) 配合物的结构、成键和能量性质,这些性质是通过密度泛函理论(DFT)和 Hartree-Fock 后(HF)计算来表征的。配合物的平衡结构表现出接近 1.6Å 的短 B-N 距离,与 H(3)N-BH(3) 等强酸强碱配合物相当。然而,在 CCSD(T)/6-311+G(2df,2dp)理论水平上,结合能仅为 5.7kcal/mol,这让人想起弱的、非键合的配合物。DFT 和 HF 后计算的电子密度的自然键轨道(NBO)和分子中原子(AIM)分析表明,B-N 配位键中的电荷转移和共价性质的程度仅略低于具有相当大结合能的可比体系(例如,H(3)N-BH(3) 和 OC-BH(3))。能量分解分析表明 N(2)、CO 和 NH(3) 配合物之间存在关键差异,主要与涉及的孤对的性质(sp 对 sp(3))以及相关占据和虚拟轨道的供体/受体特性有关,包括 sigma 和 pi。此外,CCSD/6-311+G(2df,2dp)计算表明,B-N 距离势相当非谐,在 2.1 至 2.5Å 的范围内呈现平坦的架子状区域,该区域位于 1.67Å 的最低点上方约 1.5kcal/mol。然而,根据 CCSD(T)/6-311+G(2df,2dp)//CCSD/6-311+G(2df,2dp)势,该区域更陡峭,位于平衡区域上方约 2.5kcal/mol。在 CCSD/6-311+G(2df,2dp)势中沿着 B-N 伸缩坐标的一维振动分析表明,基态振动的平均 B-N 距离为 1.71Å,比平衡距离长约 0.04Å。此外,通过对 CCSD(T)/6-311+G(2df,2dp)//CCSD/6-311+G(2df,2dp)势的分析得到的振动平均距离比 CCSD(T)/6-311+G(2df,2dp)最小值长 0.03Å。

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