Synthetic Studies on the 1,6-Methano[10]annulene Skeleton: A New Route That Provides Derivatives Substituted at the Bridge and on the Annulene Ring
摘要:
A new synthetic route to the 1,6-methano[10]annulene skeleton has been developed. The key step in this route is the semi-benzylic Favorskii rearrangement of a [4.4.2]propellane to a [4.4.1]propellane. The methodology discussed here provides access to 1,6-methano[10]annulene derivatives bearing substituents on both the bridge carbon and the annulene ring. Control of the relative positioning of these appendages is achieved by introducing the annulene substituent via cuprate addition to an allylic lactone.
Barrett David G., Liang Gui-Bal, McQuade D. Tyler, Desper John M., Schlad+, J. Amer. Chem. Soc, 116 (1994) N 23, S 10525-10532
作者:Barrett David G., Liang Gui-Bal, McQuade D. Tyler, Desper John M., Schlad+
DOI:——
日期:——
Synthetic Studies on the 1,6-Methano[10]annulene Skeleton: A New Route That Provides Derivatives Substituted at the Bridge and on the Annulene Ring
作者:David G. Barrett、Gui-Bai Liang、D. Tyler McQuade、John M. Desper、Kurt D. Schladetzky、Samuel H. Gellman
DOI:10.1021/ja00102a020
日期:1994.11
A new synthetic route to the 1,6-methano[10]annulene skeleton has been developed. The key step in this route is the semi-benzylic Favorskii rearrangement of a [4.4.2]propellane to a [4.4.1]propellane. The methodology discussed here provides access to 1,6-methano[10]annulene derivatives bearing substituents on both the bridge carbon and the annulene ring. Control of the relative positioning of these appendages is achieved by introducing the annulene substituent via cuprate addition to an allylic lactone.