Padwa Albert, Crawford Kenneth R, Straub Christopher S, Pieniazek Susan N, Houk K N
Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.
J Org Chem. 2006 Jul 21;71(15):5432-9. doi: 10.1021/jo0602322.
Intramolecular Diels-Alder reactions involving a series of N-alkenyl-substituted furanyl amides were investigated. Stable functionalized oxanorbornenes were formed in high yield upon heating at 80-110 degrees C. The cycloaddition reactions include several bromo-substituted furanyl amides, and these systems were found to proceed at a much faster rate and in higher yield than without substitution. This effect was observed by incorporating a halogen in the 3- or 5-position of the furan ring and appears to be general. The origin of increased cycloaddition rates for halo-substituted furans has been investigated with quantum mechanical calculations. The success of these reactions is attributed to increases in reaction exothermicities; this both decreases activation enthalpies and increases barriers to retrocycloadditions. Halogen substitution on furan increases reactant energy and stabilizes the product, which is attributed to the preference of electronegative halogens to be attached to a more highly alkylated and therefore more electropositive framework.
对涉及一系列N-烯基取代呋喃酰胺的分子内狄尔斯-阿尔德反应进行了研究。在80至110摄氏度加热时,能以高产率形成稳定的官能化氧杂降冰片烯。环加成反应包括几种溴取代的呋喃酰胺,并且发现这些体系比未取代时反应速率快得多且产率更高。通过在呋喃环的3-或5-位引入卤素观察到了这种效应,并且似乎具有普遍性。已用量子力学计算研究了卤代呋喃环加成速率增加的原因。这些反应的成功归因于反应放热的增加;这既降低了活化焓又增加了逆环加成的势垒。呋喃上的卤素取代增加了反应物能量并使产物稳定,这归因于电负性卤素倾向于连接到烷基化程度更高因而更正电的骨架上。