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环丙烷分子的σ-反芳香性评估。

Assessment of sigma-diatropicity of the cyclopropane molecule.

作者信息

Pelloni Stefano, Lazzeretti Paolo, Zanasi Riccardo

机构信息

Dipartimento di Chimica dell'Università degli Studi di Modena e Reggio Emilia, Via Campi 183, 41100 Modena, Italy.

出版信息

J Phys Chem A. 2007 Aug 23;111(33):8163-9. doi: 10.1021/jp0710638. Epub 2007 Aug 1.

Abstract

Spatial models of the current density field induced in the cyclopropane molecule by stationary, homogeneous magnetic fields, parallel to either the C3 or the C2 symmetry axis, have been constructed. A compact, abridged representation of the models is given via stagnation graphs that convey essential information. Maps of streamlines and moduli are also reported to complete current models that have proven useful to rationalize magnetic tensor properties, that is, magnetizability, 1H and 13C nuclear shieldings, and magnetic shielding along the C3 symmetry axis. Plots of Biot-Savart magnetic shielding density combined with current density visualization yield an accurate, detailed account of the shielding mechanisms. The magnetropicity of the system described by the current density model is fully consistent with the magnitude of magnetic tensors calculated at near Hartree-Fock level. In a field perpendicular to the molecular plane, cyclopropane sustains a diatropic sigma-ring current with the following peculiar features: (i) it follows the molecular periphery rather than the CC framework; (ii) it bifurcates in the proximity of the methylene moieties flowing along the CH bonds, both above and below the sigma(h) plane; (iii) it has an effect on the values of response properties, although it is not as large as expected from naive arguments (e.g., the center-of-mass value of the magnetic shielding constant is dominated by in-plane components rather than the out-of-plane component, which is in contrast to pi-aromatic systems such as benzene); (iv) it has a negligible effect on the strong anisotropy of carbon magnetic shielding, which is shown to arise from local currents. No evidence for strong diatropism, and therefore sigma-aromaticity of the cyclopropane molecule, was found on the magnetic criterion.

摘要

已构建了在平行于C3或C2对称轴的静态均匀磁场作用下,环丙烷分子中感应出的电流密度场的空间模型。通过传达基本信息的停滞图给出了模型的紧凑简化表示。还报告了流线图和模图,以完善电流模型,这些模型已被证明有助于合理说明磁张量性质,即磁化率、1H和13C核屏蔽以及沿C3对称轴的磁屏蔽。毕奥 - 萨伐尔磁屏蔽密度图与电流密度可视化相结合,对屏蔽机制进行了准确、详细的描述。由电流密度模型描述的系统的磁旋性与在近哈特里 - 福克水平计算的磁张量大小完全一致。在垂直于分子平面的场中,环丙烷维持着一个抗磁的σ环电流,具有以下独特特征:(i)它沿着分子外围而不是碳 - 碳骨架流动;(ii)它在沿着σh平面上方和下方的碳氢键流动的亚甲基部分附近分叉;(iii)它对响应性质的值有影响,尽管不像从简单论证预期的那么大(例如,磁屏蔽常数的质心值由面内分量主导,而不是面外分量,这与苯等π - 芳香体系相反);(iv)它对碳磁屏蔽的强各向异性影响可忽略不计,碳磁屏蔽的强各向异性表明是由局部电流引起的。根据磁判据,未发现环丙烷分子有强抗磁性的证据,因此也没有发现σ - 芳香性的证据。

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