Liu Simin, Kim Kimoon, Isaacs Lyle
Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, USA.
J Org Chem. 2007 Aug 31;72(18):6840-7. doi: 10.1021/jo071034t. Epub 2007 Aug 4.
Inverted cucurbit[n]urils (iCB[n]) form as intermediates during the synthesis of cucurbit[n]urils from glycoluril and formaldehyde in HCl (85 degrees C). Product resubmission experiments establish that the diastereomeric iCB[6] and iCB[7] are kinetic products that are less stable thermodynamically than CB[6] or CB[7] (>2.8 kcal mol(-1)). When iCB[6] or iCB[7] is heated under aqueous acidic conditions, a preference for ring contraction is noted in the formation of CB[5] and CB[6], respectively. Interestingly, under anhydrous acidic conditions ring size is preserved with iCB[6] delivering CB[6] cleanly. To establish the intramolecular nature of the iCB[6] to CB[6] conversion under anhydrous, but not aqueous, acidic conditions we performed crossover experiments involving mixtures of iCB[6] and its (13)C=O labeled isotopomer (13)C(12)-iCB[6]. An unusual diastereomeric CB[6] with a Möbius geometry (13) is proposed as a mechanistic intermediate in the conversion of iCB[6] to CB[6] under anhydrous acidic conditions. The improved mechanistic understanding provided by this study suggests improved routes to CB[n]-type compounds.
在葫芦脲由甘脲和甲醛在盐酸(85℃)中合成的过程中,会形成反式葫芦[n]脲(iCB[n])作为中间体。产物再提交实验表明,非对映异构体iCB[6]和iCB[7]是动力学产物,其热力学稳定性低于CB[6]或CB[7](>2.8千卡摩尔⁻¹)。当iCB[6]或iCB[7]在酸性水溶液条件下加热时,分别在形成CB[5]和CB[6]的过程中观察到环收缩的偏好。有趣的是,在无水酸性条件下,环大小得以保留,iCB[6]能干净地转化为CB[6]。为了确定在无水而非水溶液酸性条件下iCB[6]到CB[6]转化的分子内性质,我们进行了涉及iCB[6]及其¹³C=O标记的同位素异构体¹³C¹²-iCB[6]混合物的交叉实验。一种具有莫比乌斯几何结构的不寻常非对映异构体CB[6](13)被提议作为在无水酸性条件下iCB[6]转化为CB[6]的机理中间体。这项研究提供的对机理的更好理解表明了通往CB[n]型化合物的改进路线。