Institute for Complex Engineered Systems, Carnegie Mellon University, Pittsburgh, PA, USA.
Department of Chemical Engineering, Carnegie Mellon University, Pittsburgh, PA, USA.
Nat Mater. 2020 Sep;19(9):939-945. doi: 10.1038/s41563-020-0734-4. Epub 2020 Aug 3.
Chiral surfaces are critical components of enantioselective heterogeneous processes such as those used to prepare enantiomerically pure pharmaceuticals. While the majority of chiral surfaces in practical use are based on achiral materials whose surfaces have been modified with enantiomerically pure chiral adsorbates, there are many inorganic materials with valuable surface properties that could be rendered enantiospecific, if their surfaces were intrinsically chiral. This Perspective discusses recent developments in the fabrication of intrinsically chiral surfaces exhibiting enantiospecific adsorption, surface chemistry and electron emission. We propose possible paths to the scalable fabrication of high-surface-area, enantiomerically pure surfaces and discuss opportunities for future progress.
手性表面是对映选择性多相过程的关键组成部分,例如用于制备对映体纯药物的过程。虽然实际使用的大多数手性表面都是基于其表面用对映体纯手性吸附剂修饰的无手性材料,但仍有许多具有有价值表面性能的无机材料,如果其表面具有内在手性,则可以赋予其对映体选择性。本文讨论了在具有对映体选择性吸附、表面化学和电子发射的本征手性表面的制造方面的最新进展。我们提出了可扩展制造高表面积、对映体纯表面的可能途径,并讨论了未来进展的机会。