Williams Luke J, Bhonoah Yunas, Wilkinson Luke A, Walton James W
Department of Chemistry, Durham University, South Road, Durham, DH1 3LE, UK.
Syngenta, Jealott's Hill International Research Centre Bracknell, Berkshire, RG42 6EY, UK.
Chemistry. 2021 Feb 19;27(11):3650-3660. doi: 10.1002/chem.202004621. Epub 2021 Jan 7.
π-Coordination of aromatic molecules to metals dramatically alters their reactivity. For example, coordinated carbons become more electrophilic and C-H bonds of coordinated rings become more acidic. For many years, this change in reactivity has been used to trigger reactions that would not take place for uncoordinated arenes, however, there has been a recent resurgence in use of this technique, in part due to the development of catalytic reactions in which π-coordination is transient. In this Minireview, we describe the key reaction chemistry of arenes coordinated to a range of transition metals, including stereoselective reactions and industrially relevant syntheses. We also summarise outstanding examples of catalytic processes. Finally, we give perspectives on the future direction of the field, with respect to both reactions that are stoichiometric in activating metals and those employing catalytic metal.
芳香分子与金属的π配位显著改变其反应活性。例如,配位的碳变得更具亲电性,配位环的C-H键变得更具酸性。多年来,这种反应活性的变化已被用于引发未配位芳烃不会发生的反应,然而,最近该技术的应用有所复兴,部分原因是π配位为瞬态的催化反应的发展。在这篇综述中,我们描述了与一系列过渡金属配位的芳烃的关键反应化学,包括立体选择性反应和工业相关合成。我们还总结了催化过程的杰出实例。最后,我们就该领域的未来方向给出了展望,涉及活化金属的化学计量反应和使用催化金属的反应。