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通过供体/供体铑卡宾的不对称C-H插入反应合成苯并二氢呋喃

Synthesis of Benzodihydrofurans by Asymmetric C-H Insertion Reactions of Donor/Donor Rhodium Carbenes.

作者信息

Lamb Kellan N, Squitieri Richard A, Chintala Srinivasa R, Kwong Ada J, Balmond Edward I, Soldi Cristian, Dmitrenko Olga, Castiñeira Reis Marta, Chung Ryan, Addison J Bennett, Fettinger James C, Hein Jason E, Tantillo Dean J, Fox Joseph M, Shaw Jared T

机构信息

Department of Chemistry, University of California, One Shields Ave, Davis, CA, 95616, USA.

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware, 19716, USA.

出版信息

Chemistry. 2017 Sep 4;23(49):11843-11855. doi: 10.1002/chem.201701630. Epub 2017 Aug 10.

Abstract

Metal carbenes appended with two electron-donating groups, known as "donor/donor" carbenes, undergo diastereo- and enantioselective rhodium-catalyzed C-H insertion reactions with ether substrates to form benzodihydrofurans. Unlike the reactions of metal carbenes with electron-withdrawing groups attached, the attenuated electrophilicity enables these reactions to be conducted in Lewis basic solvents (e.g., acetonitrile) and in the presence of water. The diazo precursors for these species are prepared in situ from hydrazone using a mild and chemoselective oxidant (MnO ). Although this sequence often can be performed in one-pot, control experiments have elucidated why a "two-pot" process is often more efficient. A thorough screening of achiral catalysts demonstrated that sterically encumbered catalysts are optimal for diastereoselective reactions. Although efficient insertion into allylic and propargylic C-H bonds is observed, competing dipolar cycloaddition processes are noted for some substrates. The full substrate scope of this useful method of benzodihydrofuran synthesis, mechanisms of side reactions, and computational support for the origins of stereoselectivity are described.

摘要

带有两个供电子基团的金属卡宾,即所谓的“供体/供体”卡宾,会与醚底物发生非对映选择性和对映选择性铑催化的C-H插入反应,生成苯并二氢呋喃。与带有吸电子基团的金属卡宾的反应不同,亲电性减弱使得这些反应能够在路易斯碱性溶剂(如乙腈)中以及有水存在的情况下进行。这些物种的重氮前体是使用温和的化学选择性氧化剂(MnO)由腙原位制备的。尽管这个序列通常可以一锅法进行,但对照实验已经阐明了为什么“两步法”过程通常更有效。对手性催化剂的全面筛选表明,空间位阻较大的催化剂对于非对映选择性反应是最佳的。尽管观察到能有效地插入烯丙基和炔丙基C-H键中,但对于某些底物也注意到了竞争性的偶极环加成过程。描述了这种有用的苯并二氢呋喃合成方法的完整底物范围、副反应机理以及对立体选择性起源的计算支持。

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