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在相对论框架内利用自旋-旋转张量建立绝对核磁共振屏蔽标度。

Toward an absolute NMR shielding scale using the spin-rotation tensor within a relativistic framework.

作者信息

Aucar I Agustín, Gomez Sergio S, Giribet Claudia G, Aucar Gustavo A

机构信息

Instituto de Modelado e Innovación Tecnológica, CONICET, and Departamento de Física - Facultad de Ciencias Exactas y Naturales, UNNE, Avda Libertad 5460, W3404AAS, Corrientes, Argentina.

Instituto de Física de Buenos Aires, CONICET, and Departamento de Física - Facultad de Ciencias Exactas y Naturales, UBA, Intendente Güiraldes 2160, Ciudad Universitaria, C1428EGA, Buenos Aires, Argentina.

出版信息

Phys Chem Chem Phys. 2016 Aug 24;18(34):23572-86. doi: 10.1039/c6cp03355e.

Abstract

One of the most influential articles showing the best way to get the absolute values of NMR magnetic shieldings, σ (non-measurables) from both accurate measurements and theoretical calculations, was published a long time ago by Flygare. His model was shown to break down when heavy atoms are involved. This fact motivated the development of new theories of nuclear spin-rotation (SR) tensors, which consider electronic relativistic effects. One was published recently by some of us. In this article we take another step further and propose three different models that generalize Flygare's model. All of them are written using four-component relativistic expressions, though the two-component relativistic SO-S term also appears in one. The first clues for these developments were built from the relationship among σ and the SR tensors within the two-component relativistic LRESC model. Besides, we had to introduce a few other well defined assumptions: (i) relativistic corrections must be included in a way to best reproduce the relationship among the (e-e) term (called "paramagnetic" within the non-relativistic domain) of σ and its equivalent part of the SR tensor, (ii) as happens in Flygare's rule, the shielding of free atoms shall be included to improve accuracy. In the highest accurate model, a new term known as Spin-orbit due to spin, SO-S (in this mechanism the spin-Zeeman Hamiltonian replaces the orbital-Zeeman Hamiltonian), is included. We show the results of the application of those models to halogen containing linear molecules.

摘要

很久以前,Flygare发表了一篇极具影响力的文章,展示了从精确测量和理论计算中获取核磁共振磁屏蔽绝对值σ(不可测量值)的最佳方法。结果表明,当涉及重原子时,他的模型会失效。这一事实推动了考虑电子相对论效应的核自旋-旋转(SR)张量新理论的发展。我们中的一些人最近发表了一篇相关理论。在本文中,我们更进一步,提出了三种不同的模型,对Flygare的模型进行了推广。所有模型均使用四分量相对论表达式编写,不过在其中一个模型中也出现了二分量相对论SO-S项。这些发展的最初线索基于二分量相对论LRESC模型中σ与SR张量之间的关系。此外,我们还必须引入一些其他明确的假设:(i)相对论修正必须以最佳方式纳入,以重现σ的(e-e)项(在非相对论领域称为“顺磁”)与其SR张量等效部分之间的关系;(ii)与Flygare规则一样,应纳入自由原子的屏蔽以提高精度。在最高精度模型中,包含了一个新的项,即自旋引起的自旋-轨道项SO-S(在这种机制中,自旋-塞曼哈密顿量取代了轨道-塞曼哈密顿量)。我们展示了这些模型应用于含卤素线性分子的结果。

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