Faculty of Chemistry, University of Belgrade, Studentski trg 16, P.O.Box 158, 11000 Belgrade, Serbia.
Chemistry. 2012 Jan 2;18(1):370-6. doi: 10.1002/chem.201101882. Epub 2011 Dec 2.
Based on the nucleus-independent chemical shift (NICS) concept, isotropic magnetic shielding values have been computed along the three Cartesian axes for ethene, cyclobutadiene, benzene, naphthalene, and benzocyclobutadiene, starting from the molecular/ring center up to 10 Å away. These through-space NMR spectroscopic shielding (TSNMRS) values, which reflect the anisotropic effects, have been broken down into contributions from localized- and canonical molecular orbitals (LMOs and CMOs); these contributions revealed that the proton NMR spectroscopic chemical shifts of nuclei that are spatially close to the C=C double bond or the aromatic ring should not be explained in terms of the conventionally accepted π-electron shielding/deshielding effects. In fact, these effects followed the predictions only for the antiaromatic cyclobutadiene ring.
基于核独立化学位移(NICS)概念,从分子/环心开始,沿着三个笛卡尔轴计算了乙烯、环丁二烯、苯、萘和苯并环丁二烯的各向同性磁屏蔽值,距离可达 10 Å。这些反映各向异性效应的穿透空间 NMR 光谱屏蔽(TSNMRS)值已被分解为局域和典型分子轨道(LMO 和 CMO)的贡献;这些贡献表明,空间上靠近 C=C 双键或芳环的核的质子 NMR 光谱化学位移不应根据传统接受的π电子屏蔽/去屏蔽效应来解释。事实上,这些效应仅适用于反芳香性环丁二烯环。