Anslyn Eric V
Department of Chemistry and Biochemistry, The University of Texas, Austin, Texas 78712, USA.
J Org Chem. 2007 Feb 2;72(3):687-99. doi: 10.1021/jo0617971.
A large fraction of the field of supramolecular chemistry has focused in previous decades upon the study and use of synthetic receptors as a means of mimicking natural receptors. Recently, the demand for synthetic receptors is rapidly increasing within the analytical sciences. These classes of receptors are finding uses in simple indicator chemistry, cellular imaging, and enantiomeric excess analysis, while also being involved in various truly practical assays of bodily fluids. Moreover, one of the most promising areas for the use of synthetic receptors is in the arena of differential sensing. Although many synthetic receptors have been shown to yield exquisite selectivities, in general, this class of receptor suffers from cross-reactivities. Yet, cross-reactivity is an attribute that is crucial to the success of differential sensing schemes. Therefore, both selective and nonselective synthetic receptors are finding uses in analytical applications. Hence, a field of chemistry that herein is entitled "Supramolecular Analytical Chemistry" is emerging, and is predicted to undergo increasingly rapid growth in the near future.
在过去几十年中,超分子化学领域的很大一部分专注于研究和使用合成受体,以此作为模拟天然受体的一种手段。最近,分析科学领域对合成受体的需求正在迅速增长。这类受体正应用于简单的指示剂化学、细胞成像和对映体过量分析,同时也参与各种实际的体液检测。此外,合成受体最有前景的应用领域之一是差分传感领域。尽管许多合成受体已被证明具有极高的选择性,但总体而言,这类受体存在交叉反应性。然而,交叉反应性是差分传感方案成功的关键属性。因此,选择性和非选择性合成受体都在分析应用中得到了应用。因此,一个在此被称为“超分子分析化学”的化学领域正在兴起,并预计在不久的将来会经历越来越快速的发展。