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首页> 外文期刊>Chemistry: A European journal >Titanocene-catalyzed cascade cyclization of epoxypolyprenes:straightforward synthesis of terpenoids by free-radical chemistry
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Titanocene-catalyzed cascade cyclization of epoxypolyprenes:straightforward synthesis of terpenoids by free-radical chemistry

机译:钛茂金属催化的环氧戊二烯级联环化:通过自由基化学直接合成萜类化合物

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The titanocene-catalyzed cascade cyclization of epoxypolyenes, which are easily prepared from commercially available polyprenoids, has proven to be a useful procedure for the synthesis of C_(10)), C_(15), C_(20), and C_(30) terpenoids, including monocyclic, bicyclic, and tricyclic natural products. Both theoretical and experimental evidence suggests that this cyclization takes place in a nonconcerted fashion via discrete carbon-centered radicals. Nevetheless, the termination step of the process seems to be subjected to a kind of water-dependent control, which is unusual in free-radical chemistry. The catalytic cycle is based on the use of the novel combination Me_3SiCl/2,4,6-collidine to regenerate the titanocene catalyst. In practice this procedure has several advantages: it takes place at room temperature under mild conditions compatible with different functional groups, uses inexpensive reagents, and its end step can easily be controlled to give exocyclic double bonds by simply excluding water from the medium.
机译:钛茂金属催化的环氧多烯的级联环化反应很容易从市售的聚异戊二烯类化合物制备,已证明是合成C_(10),C_(15),C_(20)和C_(30)的有用方法萜类化合物,包括单环,双环和三环天然产物。理论和实验证据均表明,这种环化反应是通过离散的以碳为中心的自由基以非融合方式发生的。然而,该方法的终止步骤似乎要受到一种与水有关的控制,这在自由基化学中是不常见的。催化循环是基于使用新颖的组合Me_3SiCl / 2,4,6-可力丁再生钛茂催化剂。在实践中,该方法具有几个优点:它在室温下于与不同官能团兼容的温和条件下进行,使用廉价的试剂,并且只需简单地从介质中排除水,即可轻松控制其最终步骤以生成环外双键。

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