Schulich Department of Chemistry, Technion, Haifa, 3200003, Israel.
Chemphyschem. 2023 May 16;24(10):e202300080. doi: 10.1002/cphc.202300080. Epub 2023 Mar 16.
When close to the molecular plane, the behavior of nucleus independent chemical shift (NICS) as a function of the distance from the molecular plane deviates from its behavior at larger distances. By using a dense grid of NICS-probes (BQs) it is shown that, when close to the molecular plane, maximal (absolute) NICS values are obtained above the atoms. These maxima move towards the center as the grid is elevated until the (absolute) maximum NICS is obtained at the center and stay there when the grid is further elevated. It is shown that this behavior is a result of the current density, which is influenced by the electron density, according to the Biot-Savart law, which, in turn, causes the induced magnetic field measured by the NICS. It is thus concluded that if magnetic aromaticity is studied, the NICS calculations should be carried out at a large enough distance so that only the π-ring current affects the NICS. At distances ≥2 Å, NICS(r) =A+B*C . Using non-linear correlation for obtaining A, B and C and extrapolate to NICS(1) and NICS(1.7) is recommended as measures for aromaticity.
当接近分子平面时,核独立化学位移(NICS)作为距离分子平面的函数的行为与其在较大距离处的行为不同。通过使用密集的 NICS 探针(BQs)网格,表明当接近分子平面时,在原子上方获得最大(绝对值)NICS 值。随着网格的升高,这些最大值向中心移动,直到在中心获得(绝对值)最大 NICS,并在进一步升高网格时保持在那里。结果表明,这种行为是电流密度的结果,根据毕奥-萨伐尔定律,电流密度受电子密度的影响,反过来又会导致 NICS 测量的感应磁场。因此,如果研究磁芳香性,则应该在足够大的距离处进行 NICS 计算,以使只有π-环电流影响 NICS。在距离≥2 Å 时,NICS(r)=A+B*C。建议使用非线性相关来获得 A、B 和 C,并外推到 NICS(1) 和 NICS(1.7),作为芳香性的度量。