首页> 外文OA文献 >From molecular chemistry to supramolecular chemistry to superdupermolecular chemistry. Controlling covalent bond formation through non-covalent and magnetic interactions
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From molecular chemistry to supramolecular chemistry to superdupermolecular chemistry. Controlling covalent bond formation through non-covalent and magnetic interactions

机译:从分子化学到超分子化学再到超高分子化学。通过非共价和磁性相互作用控制共价键的形成

摘要

The reactions of carbon centered radical pairs often involve diffusion controlled combination and/or disproportionation reactions which are non-selective. A triplet geminate pair of radicals is produced by the photolysis of suitable ketones. The reactions of such geminate pairs can be controlled though the application of supramolecular concepts which emphasize non-covalent interaction to steer the geminate pair toward a selected pathway. In addition, "superdupermolecular" concepts, which emphasize the control of radical pair reactions through the orientation of electron spins, can be employed to further control the course of geminate pair reactions. Examples of control of a range of the selectivity of geminate radical combinations, which form strong covalent bonds, through supramolecular and superdupermolecular effects will be presented for the photolysis of ketones adsorbed in the supercages of zeolites.
机译:以碳为中心的自由基对的反应通常涉及非选择性的扩散控制的结合和/或歧化反应。通过适当的酮的光解产生三重双联的自由基对。可以通过强调非共价相互作用的超分子概念的应用来控制这种双联对的反应,以将双联对导向选定的途径。另外,强调通过电子自旋的取向控制自由基对反应的“超高分子”概念可用于进一步控制双联对反应的过程。通过超分子和超高分子效应控制形成强共价键的双联自由基组合的选择性范围的实例将提供用于吸附在沸石超笼中的酮的光解。

著录项

  • 作者

    Turro Nicholas J.;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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