Cavallo Gabriella, Metrangolo Pierangelo, Milani Roberto, Pilati Tullio, Priimagi Arri, Resnati Giuseppe, Terraneo Giancarlo
Laboratory of Nanostructured Fluorinated Materials (NFMLab), Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano , Via L. Mancinelli 7, I-20131 Milano, Italy.
VTT-Technical Research Centre of Finland , Biologinkuja 7, 02150 Espoo, Finland.
Chem Rev. 2016 Feb 24;116(4):2478-601. doi: 10.1021/acs.chemrev.5b00484. Epub 2016 Jan 26.
The halogen bond occurs when there is evidence of a net attractive interaction between an electrophilic region associated with a halogen atom in a molecular entity and a nucleophilic region in another, or the same, molecular entity. In this fairly extensive review, after a brief history of the interaction, we will provide the reader with a snapshot of where the research on the halogen bond is now, and, perhaps, where it is going. The specific advantages brought up by a design based on the use of the halogen bond will be demonstrated in quite different fields spanning from material sciences to biomolecular recognition and drug design.
当分子实体中与卤原子相关的亲电区域和另一个或同一个分子实体中的亲核区域之间存在净吸引相互作用的证据时,就会形成卤键。在这篇内容相当丰富的综述中,在简要介绍这种相互作用的历史之后,我们将向读者呈现卤键研究的现状,以及它可能的发展方向。基于卤键应用的设计所带来的具体优势将在从材料科学到生物分子识别和药物设计等截然不同的领域中得到展示。