Møller Kristian H, Hansen Anne S, Kjaergaard Henrik G
Department of Chemistry, University of Copenhagen , Universitetsparken 5, DK-2100 Copenhagen Ø, Denmark.
J Phys Chem A. 2015 Nov 5;119(44):10988-98. doi: 10.1021/acs.jpca.5b08358. Epub 2015 Oct 22.
We have observed the NH···P hydrogen bond in a gas phase complex. The bond is identified in the dimethylamine-trimethylphosphine complex by a red shift of the fundamental NH-stretching frequency observed using Fourier transform infrared spectroscopy (FT-IR). On the basis of the measured NH-stretching frequency red shifts, we find that P is a hydrogen bond acceptor atom similar in strength to S. Both are stronger acceptors than O and significantly weaker acceptors than N. The hydrogen bond angle, ∠NHP, is found to be very sensitive to the functional employed in density functional theory (DFT) optimizations of the complex and is a possible parameter to assess the quality of DFT functionals. Natural bonding orbital (NBO) energies and results from the topological methods atoms in molecules (AIM) and noncovalent interactions (NCI) indicate that the sensitivity is caused by the weakness of the hydrogen bond compared to secondary interactions. We find that B3LYP favors the hydrogen bond and M06-2X favors the secondary interactions leading to under- and overestimation, respectively, of the hydrogen bond angle relative to a DF-LCCSD(T)-F12a calculated angle. The remaining functionals tested, B3LYP-D3, B3LYP-D3BJ, CAM-B3LYP, and ωB97X-D, as well as MP2, show comparable contributions from the hydrogen bond and the secondary interactions and are close to DF-LCCSD(T)-F12a results.
我们在气相络合物中观察到了N-H···P氢键。在二甲胺-三甲基膦络合物中,通过使用傅里叶变换红外光谱(FT-IR)观察到的基本N-H伸缩频率的红移来识别该氢键。基于测量的N-H伸缩频率红移,我们发现P是一种氢键受体原子,其强度与S相似。两者都是比O更强的受体,且比N弱得多的受体。发现氢键角∠NHP对络合物密度泛函理论(DFT)优化中使用的泛函非常敏感,并且是评估DFT泛函质量的一个可能参数。自然键轨道(NBO)能量以及分子中的原子(AIM)和非共价相互作用(NCI)拓扑方法的结果表明,这种敏感性是由氢键相对于二级相互作用的弱点引起的。我们发现B3LYP有利于氢键,而M06-2X有利于二级相互作用,这分别导致相对于DF-LCCSD(T)-F12a计算角度,氢键角被低估和高估。测试的其余泛函,B3LYP-D3、B3LYP-D3BJ、CAM-B3LYP和ωB97X-D,以及MP2,显示出氢键和二级相互作用的贡献相当,并且接近DF-LCCSD(T)-F12a的结果。