Ironmonger Alan, Stockley Peter, Nelson Adam
School of Chemistry, University of Leeds, Leeds, UKLS2 9JT.
Org Biomol Chem. 2005 Jun 21;3(12):2350-3. doi: 10.1039/b504972e. Epub 2005 May 23.
A new strategy in asymmetric synthesis is described in which the desymmetrisation of a C(2h)-symmetric molecule is followed by a subsequent enantioselective 'proof-reading' step. The double asymmetric ring-opening of the bis-epoxide (1R*,3R*,5S*,7S*)-4,8-dioxa-tricyclo[5.1.0.0(3,5)]octane with azidotrimethylsilane, catalysed by a chiral chromium Salen catalyst, was studied. The reaction involves the initial asymmetric ring-opening of the bis-epoxide to give the intermediate in moderate enantiomeric excess (ca. 50% ee); the second ring-opening step yields the required diazido diol, (1S,3S,4S,6S)-4,6-diazidocyclohexane-1,3-diol, in 72% yield and 70% ee. The origin of proof reading stems from the diversion of the minor enantiomer of the intermediate to a centrosymmetric by-product, a process which improves the enantiomeric excess of the required product. Using alternative conditions, the reaction was optimised to yield the required product in >98% ee.
描述了一种不对称合成的新策略,其中对C(2h)对称分子进行去对称化,随后进行对映选择性的“校对”步骤。研究了在手性铬Salen催化剂催化下,双环氧化合物(1R*,3R*,5S*,7S*)-4,8-二氧杂三环[5.1.0.0(3,5)]辛烷与叠氮基三甲基硅烷的双不对称开环反应。该反应包括双环氧化合物的初始不对称开环,以中等对映体过量(约50% ee)得到中间体;第二步开环反应以72%的产率和70% ee得到所需的二叠氮基二醇,(1S,3S,4S,6S)-4,6-二叠氮基环己烷-1,3-二醇。校对的起源在于中间体的次要对映体转化为中心对称的副产物,这一过程提高了所需产物的对映体过量。使用替代条件,该反应被优化以得到ee值>98%的所需产物。