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通过2-(烷硫基)-5-氨基呋喃的分子内[4 + 2]环加成化学合成氮杂多环体系。

Synthesis of azapolycyclic systems via the intramolecular [4 + 2] cycloaddition chemistry of 2-(alkylthio)-5-amidofurans.

作者信息

Padwa Albert, Ginn John D, Bur Scott K, Eidell Cheryl K, Lynch Stephen M

机构信息

Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Org Chem. 2002 May 17;67(10):3412-24. doi: 10.1021/jo0111816.

Abstract

A series of 2-(methylthio)-5-amidofurans containing tethered unsaturation were prepared via the reaction of dimethyl(methylthio)sulfonium tetrafluoroborate (DMTSF) with beta-alkoxy-gamma-dithiane amides 13-16 and 27-32 in 40-70% yield. Thermolysis of these furans resulted in an intramolecular Diels-Alder reaction (IMDAF). With the exception of 45 and 46, the oxa-bridged cycloadducts could not be isolated but immediately underwent a 1,2-methylthio shift to form bicyclic lactams in 60-100% yield. It was determined that incorporation of the amido carbonyl in the tether allowed the IMDAF reaction to proceed at a lower temperature. A dramatic example of this is seen in the IMDAF reaction of furan 35, in which the presence of an amido carbonyl as part of the dienophile tether, as opposed to the annealed ring (66) or the lack of a carbonyl (67), was necessary for the cycloaddition to occur. Furan 37, annealed to an azepine ring, underwent the IMDAF reaction at or below room temperature. To identify structural features that promote the IMDAF reaction, a computational study was undertaken. Ground-state and transition-state energies were calculated for furans 17, 33, 37, and 64 using the Becke 3LYP/6-31G model. The theoretical results were in good agreement with those observed. The results indicate that the incorporation of an amide carbonyl as part of the tether system works to place the dienophile in closer proximity to the furan ring, thereby lowering the activation energy needed to reach the transition state.

摘要

通过四氟硼酸二甲硫鎓(DMTSF)与β-烷氧基-γ-二硫烷酰胺13 - 16和27 - 32反应,以40 - 70%的产率制备了一系列含有连接不饱和键的2 -(甲硫基)- 5 -氨基呋喃。这些呋喃的热解导致分子内狄尔斯-阿尔德反应(IMDAF)。除了45和46外,氧杂桥连的环加成产物无法分离,而是立即发生1,2 - 甲硫基迁移,以60 - 100%的产率形成双环内酰胺。已确定在连接链中引入酰胺羰基可使IMDAF反应在较低温度下进行。呋喃35的IMDAF反应就是一个显著例子,其中作为亲双烯体连接链一部分的酰胺羰基的存在,与退火环(66)或缺乏羰基(67)相比,对于环加成的发生是必要的。呋喃37与氮杂环庚烷环退火,在室温或低于室温下发生IMDAF反应。为了确定促进IMDAF反应的结构特征,进行了一项计算研究。使用Becke 3LYP/6 - 31G模型计算了呋喃17、33、37和64的基态和过渡态能量。理论结果与观察结果吻合良好。结果表明,作为连接链系统一部分引入酰胺羰基有助于使亲双烯体更靠近呋喃环,从而降低达到过渡态所需的活化能。

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