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林尼特的“双四重奏”从“路易斯点”模型中出现。

Emergence of Linnett's "double quartets" from a model of "Lewis dots".

机构信息

Department of Chemistry, Brandeis University, Waltham, Massachusetts, USA.

出版信息

Phys Chem Chem Phys. 2023 Feb 15;25(7):5423-5429. doi: 10.1039/d2cp05648h.

Abstract

Chemists routinely explicate molecular structures and chemical reactions in terms of the propensities of semiclassical valence electrons (aka "Lewis dots"). Typically, the electrons are viewed as forming spin pairs and recent efforts to translate this concise and intuitive qualitative picture into an efficient and relatable quantitative model have made good progress. But electrons are not always paired and advanced quantum calculations have shown that this is so even in small diamagnetic species such as dicarbon and benzene. Here we show that the latest semiclassical model for paired electrons can clarify the limitations on pairing simply by dissecting the elements of the interparticle potentials. Although not trained to do so, these elements produce a Linnett-like benzene, with three valence electrons in each CC bond, when the electrons are free to move singly. At the same time, sustaining higher order bonds with independently mobile electrons requires adjustments in the details of the model potentials at short distances. This is addressed with new training data and new forms for the contributions from Coulomb integrals. Although trained on hydrogen and carbon species separately, the combination applied to ethyne predicts the pairing of spins in the CH bonds and the dispersion of spins in the CC bond that is found in calculations. This adjusted force field is named LINNETT, in appreciation of Linnett's insightful double quartet interpretation of the Lewis octet.

摘要

化学家通常根据半经典价电子(也称为“路易斯点”)的倾向来解释分子结构和化学反应。通常,电子被视为形成自旋对,最近将这种简洁直观的定性图像转化为有效且相关的定量模型的努力取得了很好的进展。但电子并不总是成对的,先进的量子计算表明,即使在像二碳和苯这样的小抗磁性物质中也是如此。在这里,我们表明,最新的配对电子半经典模型可以通过剖析粒子间势的元素来澄清配对的局限性。尽管没有经过训练,但当电子可以自由地单独移动时,这些元素会产生类似于林奈特的苯,每个 CC 键中有三个价电子。同时,维持具有独立移动电子的更高阶键需要在短距离处对模型势的细节进行调整。这是通过新的训练数据和库仑积分的新形式来解决的。尽管分别对氢和碳物种进行了训练,但应用于乙炔的组合预测了 CH 键中自旋的配对和 CC 键中自旋的分散,这是在计算中发现的。这个调整后的力场被命名为 LINNETT,以感谢林奈特对路易斯八隅体的深刻双四重态解释。

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