Centre for Surface Chemistry and Catalysis, Faculty of Bioscience Engineering, Katholieke Universiteit Leuven, 3001 Leuven, Belgium.
Nat Chem. 2011 May;3(5):382-7. doi: 10.1038/nchem.1026. Epub 2011 Apr 10.
Metal-organic frameworks (MOFs) are a class of crystalline materials that consist of metal ions and organic ligands linked together by coordination bonds. Because of their porosity and the possibility of combining large surface areas with pore characteristics that can be tailored, these solids show great promise for a wide range of applications. Although most applications currently under investigation are based on powdered solids, developing synthetic methods to prepare defect-free MOF layers will also enable applications based on selective permeation. Here, we demonstrate how the intrinsically hybrid nature of MOFs enables the self-completing growth of thin MOF layers. Moreover, these layers can be shaped as hollow capsules that demonstrate selective permeability directly related to the micropore size of the MOF crystallites forming the capsule wall. Such capsules effectively entrap guest species, and, in the future, could be applied in the development of selective microreactors containing molecular catalysts.
金属-有机骨架(MOFs)是一类由金属离子和有机配体通过配位键连接而成的晶体材料。由于其多孔性以及将大表面积与可定制的孔特征相结合的可能性,这些固体在广泛的应用中显示出巨大的前景。尽管目前大多数正在研究的应用都是基于粉末状固体,但开发合成方法来制备无缺陷的 MOF 层也将能够实现基于选择性渗透的应用。在这里,我们展示了 MOFs 的固有混合性质如何能够实现薄 MOF 层的自完成生长。此外,这些层可以被塑造成空心胶囊,这些胶囊具有与形成胶囊壁的 MOF 微晶的微孔大小直接相关的选择性渗透性。这种胶囊可以有效地捕获客体物种,并且在未来,可以应用于含有分子催化剂的选择性微反应器的开发。