Dale Edward J, Ferris Daniel P, Vermeulen Nicolaas A, Henkelis James J, Popovs Ilja, Juríček Michal, Barnes Jonathan C, Schneebeli Severin T, Stoddart J Fraser
Department of Chemistry, Northwestern University , Evanston, Illinois 60208, United States.
Department of Chemistry, University of Basel , CH-4056 Basel, Switzerland.
J Am Chem Soc. 2016 Mar 23;138(11):3667-70. doi: 10.1021/jacs.6b01368. Epub 2016 Mar 9.
A tetracationic pyridinium-based cyclophane with a box-like geometry, incorporating two juxtaposed alkyne functions, has been synthesized. The triple bonds are reactive through cycloadditions toward dienes and azides, promoted by the electron-withdrawing nature of the pyridinium rings, as well as by the strain inherent in the cyclophane. The cycloadditions proceeded in high yields, with the cyclophane reacting faster than its acyclic analogue. While the cyclophane contains two reactive triple bonds, there is no evidence for a stable monofunctional intermediate-only starting material and the difunctional product have been detected by (1)H NMR spectroscopy. Molecular modeling of the energy landscape reveals a lower barrier for the kinetically favored second cycloaddition compared with the first one. This situation results in tandem cascading reactions within rigid cyclophanes, where reactions at a first triple bond induce increased reactivity at a distal second alkyne.
一种具有盒状几何结构、包含两个并列炔基官能团的四阳离子吡啶盐基环番已被合成。由于吡啶环的吸电子性质以及环番固有的张力,三键通过环加成反应对二烯和叠氮化物具有反应活性。环加成反应产率很高,环番的反应速度比其无环类似物快。虽然环番含有两个反应性三键,但没有证据表明存在稳定的单官能中间体——通过¹H NMR光谱仅检测到起始原料和双官能产物。能量景观的分子模型显示,与第一次环加成相比,动力学上有利的第二次环加成的势垒更低。这种情况导致在刚性环番内发生串联级联反应,其中第一个三键处的反应会使远端第二个炔烃的反应活性增加。