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揭示硫-硫桥:同主族硫属元素分子间键的精确结构与能量表征

Unveiling the Sulfur-Sulfur Bridge: Accurate Structural and Energetic Characterization of a Homochalcogen Intermolecular Bond.

作者信息

Obenchain Daniel A, Spada Lorenzo, Alessandrini Silvia, Rampino Sergio, Herbers Sven, Tasinato Nicola, Mendolicchio Marco, Kraus Peter, Gauss Jürgen, Puzzarini Cristina, Grabow Jens-Uwe, Barone Vincenzo

机构信息

Institut für Physikalische Chemie und Elektrochemie, Leibniz Universität Hannover, Callinstraße 3A, 30167, Hannover, Germany.

Dipartimento di Chimica "Giacomo Ciamician", Università di Bologna, Via Selmi 2, 40126, Bologna, Italy.

出版信息

Angew Chem Int Ed Engl. 2018 Nov 26;57(48):15822-15826. doi: 10.1002/anie.201810637. Epub 2018 Oct 31.

Abstract

By combining rotational spectroscopy in supersonic expansion with the capability of state-of-the-art quantum-chemical computations in accurately determining structural and energetic properties, the genuine nature of a sulfur-sulfur chalcogen bond between dimethyl sulfide and sulfur dioxide has been unveiled in a gas-jet environment free from collision, solvent and matrix perturbations. A SAPT analysis pointed out that electrostatic S⋅⋅⋅S interactions play the dominant role in determining the stability of the complex, largely overcoming dispersion and C-H⋅⋅⋅O hydrogen-bond contributions. Indeed, in agreement with the analysis of the quadrupole-coupling constants and of the methyl internal rotation barrier, the NBO and NOCV/CD approaches show a marked charge transfer between the sulfur atoms. Based on the assignment of the rotational spectra for 7 isotopologues, an accurate semi-experimental equilibrium structure for the heavy-atom backbone of the molecular complex has been determined, which is characterized by a S⋅⋅⋅S distance (2.947(3) Å) well below the sum of van der Waals radii.

摘要

通过将超声速膨胀中的转动光谱与最先进的量子化学计算能力相结合,能够精确确定结构和能量性质,在无碰撞、无溶剂和无基质扰动的气体喷射环境中揭示了二甲基硫醚与二氧化硫之间硫-硫族元素键的真实性质。对称性适配微扰理论(SAPT)分析指出,静电S⋅⋅⋅S相互作用在决定复合物稳定性方面起主导作用,在很大程度上克服了色散和C-H⋅⋅⋅O氢键的贡献。实际上,与四极耦合常数和甲基内旋转势垒的分析一致,自然键轨道(NBO)和自然轨道耦合价键/电荷分解(NOCV/CD)方法显示硫原子之间有明显的电荷转移。基于7种同位素变体的转动光谱归属,确定了分子复合物重原子骨架的精确半实验平衡结构,其特征是S⋅⋅⋅S距离(2.947(3) Å)远低于范德华半径之和。

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