Del Bene Janet E, Alkorta Ibon, Elguero José
Department of Chemistry, Youngstown State University , Youngstown, Ohio 44555, United States.
Instituto de Química Médica, CSIC , Juan de la Cierva, 3, E-28006 Madrid, Spain.
J Phys Chem A. 2017 Oct 26;121(42):8136-8146. doi: 10.1021/acs.jpca.7b08393. Epub 2017 Oct 16.
Ab initio MP2/aug'-cc-pVTZ calculations were performed to identify equilibrium complexes and molecules and the transition structures that interconvert them, on the potential energy surfaces of a series of seven binary systems that have nitrogen heterocyclic carbenes (NHCs) as the electron-pair donors to CO. Seven of the NHCs form complexes stabilized by C···C tetrel bonds, and six of these seven are also stabilized by a secondary interaction between an O of CO and the adjacent N-H group of the carbene. Six of the seven NHCs also form stable molecules with C-C covalent bonds, and with one exception, these molecules have binding energies that are significantly greater than the binding energies of the complexes. Charge-transfer stabilizes all of the NHC:CO complexes and occurs from the C lone pair of the carbene to the CO molecule. The six complexes that have secondary stabilizing interactions are also stabilized by back-donation of charge from the O to the adjacent N-H group of the carbene. Transition structures present barriers to the interconversion of complexes and molecules. With one exception, the barrier for converting a molecule to a complex is much greater than the barrier for the reverse reaction. Atoms in Molecules bonding parameters, shifts of IR C-O stretching and O-C-O bending frequencies, changes in NMR C chemical shieldings, and changes in C-C and C-O coupling constants as J(C-C) and J(C-O) for complexes and transition structures become J(C-C) and J(C-O) for molecules, are all consistent with the changing nature of the C···C tetrel bond in the complex through the transition state to a covalent C-C bond in the molecule.
进行了从头算MP2/aug'-cc-pVTZ计算,以确定一系列七个二元体系势能面上的平衡复合物和分子以及使它们相互转化的过渡结构,这些二元体系以氮杂环卡宾(NHCs)作为向CO提供电子对的供体。七个NHCs中的七个形成了通过C···C四元键稳定的复合物,并且这七个中的六个还通过CO的O与卡宾相邻的N-H基团之间的二级相互作用而稳定。七个NHCs中的六个还形成了具有C-C共价键的稳定分子,除了一个例外,这些分子的结合能明显大于复合物的结合能。电荷转移使所有NHC:CO复合物稳定,并且发生从卡宾的C孤对向CO分子的转移。具有二级稳定相互作用的六个复合物还通过电荷从O向卡宾相邻的N-H基团的反馈而稳定。过渡结构对复合物和分子的相互转化存在障碍。除了一个例外,将分子转化为复合物的障碍远大于逆反应的障碍。对于复合物和过渡结构,分子中的原子键合参数、IR C-O伸缩和O-C-O弯曲频率的位移、NMR C化学屏蔽的变化以及C-C和C-O耦合常数J(C-C)和J(C-O)的变化,当转变为分子的J(C-C)和J(C-O)时,都与复合物中通过过渡态到分子中C-C共价键的C···C四元键性质的变化一致。