Gauthier Maxime, Whittingham Jessica B M, Hasija Avantika, Tetlow Daniel J, Leigh David A
Department of Chemistry, University of Manchester, Oxford Road, Manchester M13 9PL, U.K.
School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200062, China.
J Am Chem Soc. 2024 Oct 30;146(43):29496-29502. doi: 10.1021/jacs.4c09066. Epub 2024 Oct 21.
Removing the nitrogen atom from secondary amines while simultaneously linking the remaining fragments is a powerful form of late-stage skeletal editing. Here, we report its use for the deletion of the nitrogen atom of the dibenzylammonium template used to assemble crown ether rotaxanes. The reaction uses an anomeric amide that activates secondary amines to generate a carbon-carbon bond that replaces the amine nitrogen. Despite the potential for dethreading of the intermediate diradical pair, the nitrogen atom was successfully deleted from a series of rotaxane axles as long as the macrocycle could access coconformations that did not inhibit the reaction of the amine group. The skeletally edited interlocked molecules were obtained directly from the parent crown ether-dibenzylammonium rotaxanes in modest yields (23-36%) and characterized by NMR spectroscopy, mass spectrometry, and X-ray crystallography. One skeletally edited rotaxane shows a network of weak CH···O hydrogen bonds between the crown ether and benzylic methylene groups of the axle in the solid state, in place of the crown ether-ammonium binding motif used to assemble the parent, unedited, rotaxane.
从仲胺中去除氮原子并同时连接其余片段是一种强大的后期骨架编辑形式。在此,我们报告了其用于删除用于组装冠醚轮烷的二苄基铵模板中的氮原子。该反应使用端基酰胺活化仲胺以生成取代胺氮的碳-碳键。尽管中间体双自由基对存在解扣的可能性,但只要大环能够进入不抑制胺基反应的共构象,氮原子就可以成功地从一系列轮烷轴上删除。骨架编辑的互锁分子直接从母体冠醚-二苄基铵轮烷中以适度的产率(23-36%)获得,并通过核磁共振光谱、质谱和X射线晶体学进行表征。一种骨架编辑的轮烷在固态下在冠醚和轴的苄基亚甲基之间显示出弱CH···O氢键网络,取代了用于组装母体未编辑轮烷的冠醚-铵结合基序。