Exploiting non-covalent π interactions for catalyst design.

Exploiting non-covalent π interactions for catalyst design.
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DOI:
10.1038/nature21701
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发表时间:
2017-03-29
期刊:
影响因子:
64.8
通讯作者:
Toste FD
Toste FD
中科院分区:
综合性期刊1区
文献类型:
--
作者:
Neel AJ;Hilton MJ;Sigman MS;Toste FD

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分子的识别、结合和催化通常是由芳香族官能团的非共价相互作用所介导的。尽管这些所谓的π相互作用的相对复杂性使它们的研究具有挑战性,但理论和建模现在已经到了我们可以解释它们的物理起源并获得它们对分子结合和化学转化的影响的可靠阶段。这为合理操纵这些复杂的非共价相互作用并将其直接结合到小分子催化剂和酶的设计中提供了机会。
Molecular recognition, binding and catalysis are often mediated by non-covalent interactions involving aromatic functional groups. Although the relative complexity of these so-called π interactions has made them challenging to study, theory and modelling have now reached the stage at which we can explain their physical origins and obtain reliable insight into their effects on molecular binding and chemical transformations. This offers opportunities for the rational manipulation of these complex non-covalent interactions and their direct incorporation into the design of small-molecule catalysts and enzymes.
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