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Nucleophile-Assisted Alkene Activation: Olefins Alone Are Often Incompetent

机译:亲核分子协助的烯烃活化:单烯烃通常无能为力

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摘要

Emerging work on organocatalytic enantioselective halocyclizations naturally draws on conditions where both new bonds must be formed under delicate control, the reaction regime where the concerted nature of the Ad_E3 mechanism is of greatest importance. Without assistance, many simple alkene substrates react slowly or not at all with conventional halenium donors under synthetically relevant reaction conditions. As demonstrated earlier by Shilov, Cambie, Williams, Fahey, and others, alkenes can undergo a concerted Ad_E3-type reaction via nucleophile participation, which sets the configuration of the newly created stereocenters at both ends in one step. Herein, we explore the modulation of alkene reactivity and halocyclization rates by nucleophile proximity and basicity, through detailed analyses of starting material spectroscopy, addition stereopreferences, isotope effects, and nucleophile-alkene interactions, all obtained in a context directly relevant to synthesis reaction conditions. The findings build on the prior work by highlighting the reactivity spectrum of halocyclizations from stepwise to concerted, and suggest strategies for design of new reactions. Alkene reactivity is seen to span the range from the often overgeneralized "sophomore textbook" image of stepwise electrophilic attack on the alkene and subsequent nudeophilic bond formation, to the nudeophile-assisted alkene activation (NAAA) cases where electron donation from the nudeophilic addition partner activates the alkene for electrophilic attack. By highlighting the factors that control reactivity across this range, this study suggests opportunities to explain and control stereo-, regio-, and organocatalytic chemistry in this important dass of alkene additions.
机译:有机催化对映选择性卤环化的新兴工作自然地利用了必须在精细控制下形成两个新键的条件,在这种条件下,Ad_E3机理的协调性至关重要。在没有辅助作用的情况下,许多简单的烯烃底物在合成相关的反应条件下与常规的donor供体反应缓慢或完全不反应。如Shilov,Cambie,Williams,Fahey和其他人先前所证明的,烯烃可以通过亲核试剂参与协调的Ad_E3型反应,从而一步一步设置了新建立的立体中心的构型。在本文中,我们通过对原料光谱,添加立体偏好,同位素效应和亲核-烯烃相互作用的详细分析来探索亲核试剂的亲和力和碱性对烯烃反应性和卤代环化速率的调节,所有这些都是在与合成反应条件直接相关的背景下获得的。这些发现是在先前工作的基础上,强调卤代环化从逐步到协同的反应谱,并提出了设计新反应的策略。烯烃的反应性涵盖了范围广,从对烯烃的逐步亲电攻击和随后的亲核键形成的通常过于概括的“二年级教科书”图像,到亲核加成伙伴的电子捐赠激活的亲核辅助烯烃活化(NAAA)情况用于亲电攻击的烯烃。通过重点介绍在此范围内控制反应性的因素,这项研究提出了解释和控制这种重要的烯烃添加途径中立体,区域和有机催化化学的机会。

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  • 来源
    《Journal of the American Chemical Society》 |2016年第26期|8114-8119|共6页
  • 作者单位

    Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States;

    Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States;

    Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States;

    Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States;

    Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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