Karim Alavi, Schulz Nils, Andersson Hanna, Nekoueishahraki Bijan, Carlsson Anna-Carin C, Sarabi Daniel, Valkonen Arto, Rissanen Kari, Gräfenstein Jürgen, Keller Sandro, Erdélyi Máté
Department of Chemistry and Molecular Biology , University of Gothenburg , SE-412 96 Gothenburg , Sweden.
Faculty of Chemistry and Biochemistry, Organic Chemistry I , Ruhr-Universität Bochum , Universitätsstraße 150 , 44801 Bochum , Germany.
J Am Chem Soc. 2018 Dec 19;140(50):17571-17579. doi: 10.1021/jacs.8b09367. Epub 2018 Dec 7.
Tetrel bonding is the noncovalent interaction of group IV elements with electron donors. It is a weak, directional interaction that resembles hydrogen and halogen bonding yet remains barely explored. Herein, we present an experimental investigation of the carbon-centered, three-center, four-electron tetrel bond, [N-C-N], formed by capturing a carbenium ion with a bidentate Lewis base. NMR-spectroscopic, titration-calorimetric, and reaction-kinetic evidence for the existence and structure of this species is reported. The studied interaction is by far the strongest tetrel bond reported so far and is discussed in comparison with the analogous halogen bond. The necessity of the involvement of a bidentate Lewis base in its formation is demonstrated by providing spectroscopic and crystallographic evidence that a monodentate Lewis base induces a reaction rather than stabilizing the tetrel bond complex. A vastly decreased Lewis basicity of the bidentate ligand or reduced Lewis acidity of the carbenium ion weakens-or even prohibits-the formation of the tetrel bond complex, whereas synthetic modifications facilitating attractive orbital overlaps promote it. As the geometry of the complex resembles the S2 transition state, it provides a model system for the investigation of fundamental reaction mechanisms and chemical bonding theories.
四元rel键是第IV族元素与电子供体之间的非共价相互作用。它是一种弱的、有方向性的相互作用,类似于氢键和卤键,但仍几乎未被探索。在此,我们展示了对以碳为中心的三中心、四电子四元rel键[N-C-N]的实验研究,该键通过用双齿路易斯碱捕获碳正离子形成。报道了该物种存在和结构的核磁共振光谱、滴定量热和反应动力学证据。所研究的相互作用是迄今为止报道的最强的四元rel键,并与类似的卤键进行了比较讨论。通过提供光谱和晶体学证据证明单齿路易斯碱引发反应而非稳定四元rel键络合物,从而证明了双齿路易斯碱参与其形成的必要性。双齿配体的路易斯碱度大幅降低或碳正离子的路易斯酸度降低会削弱甚至阻止四元rel键络合物的形成,而促进有吸引力的轨道重叠的合成修饰则会促进其形成。由于络合物的几何形状类似于S2过渡态,它为研究基本反应机理和化学键理论提供了一个模型系统。