Sperry Jeffrey B, Whitehead Christopher R, Ghiviriga Ion, Walczak Ryan M, Wright Dennis L
Department of Chemistry, Dartmouth College, Hanover, New Hampshire 03755, USA.
J Org Chem. 2004 May 28;69(11):3726-34. doi: 10.1021/jo049889i.
The preparation of annulated furan systems as key synthetic intermediates through the application of a two-step annulation involving an electrochemical ring closure between a furan and a silyl enol ether has been studied. The reaction was shown to be quite general for the formation of six-membered rings in good yields and was tolerant of a variety of different functional groups. The ring closure was highly stereoselective, leading to the formation of cis-fused systems. Cyclic voltammetry and probe molecules were used to gain mechanistic insight into the reaction. These studies suggested that the key ring closure involved an initial oxidation of the silyl enol ether to a radical cation followed by a furan-terminated cyclization.
通过应用两步环化反应(涉及呋喃与硅烯醇醚之间的电化学闭环反应)来制备作为关键合成中间体的环状呋喃体系已得到研究。该反应对于以良好产率形成六元环而言具有相当的通用性,并且能够耐受多种不同的官能团。闭环反应具有高度的立体选择性,导致形成顺式稠合体系。使用循环伏安法和探针分子来深入了解该反应的机理。这些研究表明,关键的闭环反应涉及硅烯醇醚首先氧化为自由基阳离子,随后进行呋喃终止的环化反应。