Koblenz Tehila S, Wassenaar Jeroen, Reek Joost N H
Supramolecular and Homogeneous Catalysis, van't Hoff Institute for Molecular Sciences, University of Amsterdam, Nieuwe Achtergracht 166, Amsterdam, 1018 WV, The Netherlands.
Chem Soc Rev. 2008 Feb;37(2):247-62. doi: 10.1039/b614961h. Epub 2007 Oct 19.
Confined nanospaces in which reactions can take place, have been created by various approaches such as molecular capsules, zeolites and micelles. In this tutorial review we focus on the application of self-assembled nanocapsules with well-defined cavities as nanoreactors for organic and metal catalysed transformations. The self-assembly of nanocapsules based on noncovalent bonds such as hydrogen bonds and metal-ligand interactions is discussed to introduce the properties of the building blocks and capsules thereof. We will elaborate on the encapsulation effects that can be expected when reactions are carried out in a capsule-protected environment. Subsequently, literature examples will be described in which self-assembled nanocapsules are applied as nanoreactors, for various types of organic and metal catalysed reactions.
通过分子胶囊、沸石和胶束等各种方法,已经创造出了能够发生反应的受限纳米空间。在本综述中,我们重点关注具有明确空腔的自组装纳米胶囊作为有机和金属催化转化的纳米反应器的应用。讨论了基于氢键和金属-配体相互作用等非共价键的纳米胶囊的自组装,以介绍其构建单元和胶囊的性质。我们将详细阐述在胶囊保护的环境中进行反应时可能预期的封装效果。随后,将描述文献实例,其中自组装纳米胶囊被用作纳米反应器,用于各种类型的有机和金属催化反应。