Dipartimento di Chimica, dell'Università degli Studi di Modena, via Campi 183, 41100 Modena, Italy.
J Comput Chem. 2011 Jun;32(8):1599-611. doi: 10.1002/jcc.21739. Epub 2011 Mar 1.
Three-dimensional models of the quantum-mechanical current density J(B) , induced in the electron cloud of the C(10)H(10) pentaprismane molecule by a magnetic field B applied along the C(5) (a C(2)) symmetry axis, orthogonal to the pentagonal (a rectangular) face, and denoted by B(‖) (B(⊥)), have been constructed. Predictions of near Hartree-Fock quality are reported for the diagonal components of magnetic tensors, magnetizability (ξ), nuclear shielding of carbon (σ(C)) and hydrogen (σ(H)), and virtual shielding at the center of mass (σ(CM)). The complicated spatial features of the induced electronic current-density field have been rationalized and compactly described via stagnation graphs that elucidate the details of its topological structure. A representation of J(B) is obtained by three-dimensional perspective plots and by planar maps visualizing phase portraits of electron flow in a series of molecular domains. Both streamline J(B) /|J(B) | and modulus |J(B) | are analyzed. These graphic tools illustrate the competition between diatropic and paratropic regimes which determine the magnitude of various components of magnetizability and magnetic shielding of hydrogen and carbon nuclei. Shielding density maps show that the differential Biot-Savart law explains magnetic shielding at hydrogen and carbon nuclei, and virtual shielding at ring and cage centers. Similarities and/or contrasting ring current effects on magnetotropicity are discussed by a comparison with triprismane C(6)H(6) and cubane C(8)H(8) .
已构建了 C(10)H(10)五并苯分子电子云在磁场 B 作用下产生的量子力学电流密度 J(B)的三维模型,磁场 B 沿 C(5)(C(2))对称轴、垂直于五边形(矩形)面施加,分别记为 B(‖)(B(⊥))。报告了磁场张量、磁化率(ξ)、碳(σ(C))和氢(σ(H))核屏蔽以及质心(σ(CM))虚拟屏蔽的对角分量的哈特ree-fock 质量预测。通过停滞图,合理地解释了诱导电子电流密度场的复杂空间特征,并对其拓扑结构的细节进行了简洁描述。通过三维透视图和一系列分子域中电子流的相图可视化的平面图获得了 J(B)的表示。分析了流线 J(B) /|J(B) |和模|J(B) |。这些图形工具说明了顺磁和反磁状态之间的竞争,这决定了磁化率和氢核和碳核磁屏蔽的各个分量的大小。屏蔽密度图表明,微分毕奥-萨伐尔定律解释了氢核和碳核的磁屏蔽以及环和笼中心的虚拟屏蔽。通过与三并苯 C(6)H(6)和立方烷 C(8)H(8)的比较,讨论了对磁各向异性的类似和/或对比的环电流效应。