School of Chemistry, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
Chem Soc Rev. 2015 Aug 7;44(15):5341-70. doi: 10.1039/c5cs00096c. Epub 2015 May 12.
Catalysis is key to the effective and efficient transformation of readily available building blocks into high value functional molecules and materials. For many years research in this field has largely focussed on the invention of new catalysts and the optimization of their performance to achieve high conversions and/or selectivities. However, inspired by Nature, chemists are beginning to turn their attention to the development of catalysts whose activity in different chemical processes can be switched by an external stimulus. Potential applications include using the states of multiple switchable catalysts to control sequences of transformations, producing different products from a pool of building blocks according to the order and type of stimuli applied. Here we outline the state-of-art in artificial switchable catalysis, classifying systems according to the trigger used to achieve control over the catalytic activity and stereochemical or other structural outcomes of the reaction.
催化是将易得的构建块有效且高效地转化为高附加值功能分子和材料的关键。多年来,该领域的研究主要集中在发明新型催化剂及其性能的优化,以实现高转化率和/或选择性。然而,受自然启发,化学家们开始将注意力转向开发能够通过外部刺激切换其在不同化学反应中活性的催化剂。潜在的应用包括利用多个可切换催化剂的状态来控制转化序列,根据施加刺激的顺序和类型,从构建块库中产生不同的产物。在这里,我们概述了人工可切换催化的最新进展,根据用于实现对催化活性和反应的立体化学或其他结构结果的控制的触发因素对系统进行分类。