Melancon Kortney M, Cundari Thomas R
University of North Texas, Department of Chemistry, Denton, Texas 76201, USA.
Org Biomol Chem. 2020 Sep 30;18(37):7437-7447. doi: 10.1039/d0ob01267j.
Density functional theory (DFT) and multiconfigurational self-consistent field theory (MCSCF) methods are employed to investigate variation of the electronic properties of various N-heterocyclic carbenes. Alterations to the backbone by increased or decreased conjugation, heteroatom substitution in the NHC ring, and electron-donating or -withdrawing backbone substituents are modeled. The MCSCF calculations show extensive delocalization of both the highest occupied and lowest unoccupied molecular orbitals for NHCs with polymerizable backbone substituents. The free energies of the intermediates and transition structures for benzoin condensation are also shown to be sensitive to substitution of the NHC backbone. Taken together, these results imply great sensitivity of the reactivity of poly(NHC) catalysts to backbone modification at this moiety. Implications with respect to enhancement of poly(NHC)s employed in umpolung catalysis are discussed.
采用密度泛函理论(DFT)和多组态自洽场理论(MCSCF)方法研究各种氮杂环卡宾电子性质的变化。通过增加或减少共轭来改变主链、在NHC环中进行杂原子取代以及引入供电子或吸电子的主链取代基进行建模。MCSCF计算表明,具有可聚合主链取代基的NHC的最高占据分子轨道和最低未占据分子轨道都有广泛的离域。苯偶姻缩合中间体和过渡结构的自由能也显示对NHC主链的取代敏感。综合起来,这些结果表明聚(NHC)催化剂的反应性对该部分主链修饰非常敏感。讨论了对用于极性翻转催化的聚(NHC)的增强作用。