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The uses of supramolecular chemistry in synthetic methodology development: examples of anion and neutral molecular recognition

机译:超分子化学在合成方法开发中的应用:阴离子和中性分子识别的实例

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摘要

The principles of supramolecular chemistry have successfully permeated through a broad range of organic chemistry subdisciplines. One subdiscipline that is not routinely associated with supramolecular chemistry is that of organic synthetic methodology. Though sometimes indiscernible, non-bonded and bonding supramolecular interactions play a large role in chemical reactions and catalysis. Many synthetic methods hinge on the creation of anionic charge, albeit just partial, at some step during this process, and hence are prime targets for molecular recognition interactions. Examples are artificial enzymes, biomimetic catalysis, organocatalysis, and many of the catalysts that are derived from a combinatorial screen. Further, supramolecular chemistry is playing an increasingly large role in high-throughput analytical techniques. This tutorial review ties together supramolecular approaches to methodology creation, combinatorial screening, and analytical protocols. The goal is to show, and further predict, that supramolecular chemistry will continually increase its impact in organic synthetic methodology development.
机译:超分子化学原理已成功地渗透到广泛的有机化学子学科中。有机合成方法学是与超分子化学常规不相关的一个子学科。尽管有时难以区分,但非键和键超分子相互作用在化学反应和催化中起着重要作用。在此过程中的某些步骤中,许多合成方法取决于阴离子电荷的产生,尽管只是部分电荷,因此是分子识别相互作用的主要目标。实例是人造酶,仿生催化,有机催化以及许多源自组合筛选的催化剂。此外,超分子化学在高通量分析技术中发挥着越来越大的作用。本教程将超分子方法与方法创建,组合筛选和分析方案联系在一起。目的是证明并进一步预测,超分子化学将继续增加其对有机合成方法学发展的影响。

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