Dhaka Arun, Jeannin Olivier, Jeon Ie-Rang, Aubert Emmanuel, Espinosa Enrique, Fourmigué Marc
Univ Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) UMR 6226, 35042, Rennes, France.
Laboratoire CRM2, UMR CNRS 7036, Institut Jean Barriol, Université de Lorraine, BP 70239, 54506, Vandoeuvre-les-Nancy, France.
Angew Chem Int Ed Engl. 2020 Dec 21;59(52):23583-23587. doi: 10.1002/anie.202011981. Epub 2020 Oct 22.
Activation of a deep electron-deficient area on chalcogen atoms (Ch=Se, Te) is demonstrated in alkynyl chalcogen derivatives, in the prolongation of the (C≡)C-Ch bond. The solid-state structures of 1,4-bis(methylselenoethynyl)perfluorobenzene (1Se) show the formation of recurrent chalcogen-bonded (ChB) motifs. Association of 1Se and the tellurium analogue 1Te with 4,4'-bipyridine and with the stronger Lewis base 1,4-di(4-pyridyl)piperazine gives 1:1 co-crystals with 1D extended structures linked by short and directional ChB interactions, comparable to those observed with the corresponding halogen bond (XB) donor, 1,4-bis(iodoethynyl)-perfluorobenzene. This "alkynyl" approach for chalcogen activation provides the crystal-engineering community with efficient, and neutral ChB donors for the elaboration of supramolecular 1D (and potentially 2D or 3D) architectures, with a degree of strength and predictability comparable to that of halogen bonding in iodoacetylene derivatives.
在炔基硫属元素衍生物中,通过延长(C≡)C - Ch键,证明了硫属元素原子(Ch = Se、Te)上一个深度缺电子区域的活化。1,4 - 双(甲基硒代乙炔基)全氟苯(1Se)的固态结构显示出反复出现的硫属元素键合(ChB)基序的形成。1Se及其碲类似物1Te与4,4'-联吡啶以及更强的路易斯碱1,4 - 二(4 - 吡啶基)哌嗪形成1:1共晶体,具有通过短程和定向ChB相互作用连接的一维扩展结构,这与用相应的卤键(XB)供体1,4 - 双(碘代乙炔基)全氟苯观察到的结构类似。这种用于硫属元素活化的“炔基”方法为晶体工程领域提供了高效且中性的ChB供体,用于构建超分子一维(以及潜在的二维或三维)结构,其强度和可预测性程度与碘代乙炔衍生物中的卤键相当。