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手性催化剂的对映体特异性电沉积

Enantiospecific electrodeposition of a chiral catalyst.

作者信息

Switzer Jay A, Kothari Hiten M, Poizot Philippe, Nakanishi Shuji, Bohannan Eric W

机构信息

Department of Chemistry and Graduate Center for Materials Research, University of Missouri-Rolla, Rolla, Missouri 65409-1170, USA.

出版信息

Nature. 2003 Oct 2;425(6957):490-3. doi: 10.1038/nature01990.

Abstract

Many biomolecules are chiral--they can exist in one of two enantiomeric forms that only differ in that their structures are mirror images of each other. Because only one enantiomer tends to be physiologically active while the other is inactive or even toxic, drug compounds are increasingly produced in an enantiomerically pure form using solution-phase homogeneous catalysts and enzymes. Chiral surfaces offer the possibility of developing heterogeneous enantioselective catalysts that can more readily be separated from the products and reused. In addition, such surfaces might serve as electrochemical sensors for chiral molecules. To date, chiral surfaces have been obtained by adsorbing chiral molecules or slicing single crystals so that they exhibit high-index faces, and some of these surfaces act as enantioselective heterogeneous catalysts. Here we show that chiral surfaces can also be produced through electrodeposition, a relatively simple solution-based process that resembles biomineralization in that organic molecules adsorbed on surfaces have profound effects on the morphology of the inorganic deposits. When electrodepositing a copper oxide film on an achiral gold surface in the presence of tartrate ion in the deposition solution, the chirality of the ion determines the chirality of the deposited film, which in turn determines the film's enantiospecificity during subsequent electrochemical oxidation reactions.

摘要

许多生物分子是手性的——它们可以以两种对映体形式之一存在,这两种对映体形式的唯一区别在于它们的结构是彼此的镜像。由于只有一种对映体往往具有生理活性,而另一种则无活性甚至有毒,因此越来越多地使用溶液相均相催化剂和酶以对映体纯的形式生产药物化合物。手性表面为开发非均相对映选择性催化剂提供了可能性,这种催化剂可以更容易地从产物中分离出来并重复使用。此外,这种表面还可以用作手性分子的电化学传感器。到目前为止,手性表面是通过吸附手性分子或切割单晶以使其呈现高指数面而获得的,其中一些表面可作为对映选择性非均相催化剂。在这里,我们表明手性表面也可以通过电沉积来制备,这是一种相对简单的基于溶液的过程,类似于生物矿化,因为吸附在表面的有机分子对无机沉积物的形态有深远影响。当在沉积溶液中存在酒石酸盐离子的情况下在非手性金表面上电沉积氧化铜膜时,离子的手性决定了沉积膜的手性,这反过来又决定了膜在随后的电化学氧化反应中的对映体特异性。

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