Loeb Stephen J, Tiburcio Jorge, Vella Sarah J, Wisner James A
Department of Chemistry and Biochemistry, University of Windsor, Windsor, ON, CanadaN9B 3P4.
Org Biomol Chem. 2006 Feb 21;4(4):667-80. doi: 10.1039/b514528g. Epub 2006 Jan 6.
Linear 1,2-bis(pyridinium)ethane 'axles' and macrocyclic 24-membered crown ether 'wheels' (, and ) combine to form [2]pseudorotaxanes. These interpenetrated adducts are held together by N+...O ion-dipole interactions, a series of C-H...O hydrogen bonds and pi-stacking between electron-poor pyridinium rings of the axle and electron-rich catechol rings of the wheel. 1H NMR spectroscopy was used to identify the structural details of the interaction and to determine the thermodynamics of the binding process in solution. Analysis of nine of these adducts by single crystal X-ray crystallography allowed a detailed study of the non-covalent interactions in the solid state. A wide variety of structural changes could be made to the system. The versatility and potential of the template for the construction of permanently interlocked structures such as rotaxanes and catenanes is discussed.
直链1,2 - 双(吡啶鎓)乙烷“轴”与大环24元冠醚“轮”( 以及 )结合形成[2]准轮烷。这些互穿加合物通过N⁺...O离子 - 偶极相互作用、一系列C - H...O氢键以及轴上贫电子吡啶鎓环与轮上富电子儿茶酚环之间的π - 堆积作用而结合在一起。¹H NMR光谱用于确定相互作用的结构细节,并测定溶液中结合过程的热力学。通过单晶X射线晶体学对其中九种加合物进行分析,得以详细研究固态中的非共价相互作用。可以对该体系进行各种各样的结构改变。讨论了该模板在构建诸如轮烷和索烃等永久互锁结构方面的多功能性和潜力。