Vasiliu Monica, Peterson Kirk A, Arduengo Anthony J, Dixon David A
Department of Chemistry, The University of Alabama, Shelby Hall, Tuscaloosa, Alabama, 35487-0336, USA.
Department of Chemistry, Washington State University, Pullman, WA, 99164-4630, USA.
Chemistry. 2017 Dec 11;23(69):17556-17565. doi: 10.1002/chem.201703539. Epub 2017 Nov 16.
The hydrogenation energies and singlet-triplet (S-T) splittings at the G3MP2 level of theory have been calculated for a wide range of carbenes. The carbene, :CXY with different substituents (X, Y=H, CN, NC, F, Cl, OH, OCH , CH , CF , SiH , SiMe , phenyl, CH=O, PH , and NH ) at the carbenic carbon center, immidazole-based carbenes, Bertrand's carbenes, and Seppelt's CF CSF were studied. The stable carbenes are singlets with large S-T splittings and with the least exothermic hydrogenation energies. The singlet ground state immidazole-based carbenes are calculated to have the least exothermic hydrogenation energies (-15 to -30 kcal mol ) and the largest S-T gaps. The singlet ground states of the Bertrand carbenes have more exothermic hydrogenation (ca. -67 kcal mol ) energies and much smaller S-T gaps. The more exothermic reaction energies arise due to the need to make the phosphorus planar in the carbene so that it can donate into the empty p-orbital at the carbene carbon center. The bending potential at the carbene carbon center in the Bertrand compounds is very flat with a large XC:Y angle. Seppelt's CF CSF appears to be energetically similar to the Bertrand system, probably due to the required adjustments for geometric distortions at the sulfur center.
在G3MP2理论水平下,已计算了多种卡宾的氢化能和单重态 - 三重态(S - T)分裂。研究了在卡宾碳中心带有不同取代基(X,Y = H、CN、NC、F、Cl、OH、OCH₃、CH₃、CF₃、SiH₃、SiMe₃、苯基、CH = O、PH₂和NH₂)的卡宾:CXY、咪唑基卡宾、伯特兰卡宾以及塞佩尔特的CF₃CSF。稳定的卡宾是具有大S - T分裂且氢化能放热最少的单重态。计算得出单重态基态的咪唑基卡宾具有最少的放热氢化能(-15至-30 kcal·mol⁻¹)和最大的S - T能隙。伯特兰卡宾的单重态基态具有更多的放热氢化能(约-67 kcal·mol⁻¹)且S - T能隙小得多。氢化反应能量放热更多是因为需要使卡宾中的磷呈平面构型,以便它能向卡宾碳中心的空p轨道供电子。伯特兰化合物中卡宾碳中心的弯曲势能非常平缓,XC:Y角很大。塞佩尔特的CF₃CSF在能量上似乎与伯特兰体系相似,这可能是由于硫中心几何畸变所需的调整。