CIN2, ICN-CSIC, Catalan Institute of Nanotechnology, Esfera UAB, 08193 Bellaterra, Spain.
Nat Chem. 2013 Mar;5(3):203-11. doi: 10.1038/nchem.1569. Epub 2013 Feb 10.
Metal-organic frameworks (MOFs) are among the most attractive porous materials known today. Their miniaturization to the nanoscale--into nanoMOFs--is expected to serve myriad applications from drug delivery to membranes, to open up novel avenues to more traditional storage and catalysis applications, and to enable the creation of sophisticated superstructures. Here, we report the use of spray-drying as a versatile methodology to assemble nanoMOFs, yielding spherical hollow superstructures with diameters smaller than 5 µm. This strategy conceptually mimics the emulsions used by chemists to confine the synthesis of materials, but does not require secondary immiscible solvents or surfactants. We demonstrate that the resulting spherical, hollow superstructures can be processed into stable colloids, whose disassembly by sonication affords discrete, homogeneous nanoMOFs. This spray-drying strategy enables the construction of multicomponent MOF superstructures, and the encapsulation of guest species within these superstructures. We anticipate that this will provide new routes to capsules, reactors and composite materials.
金属-有机骨架(MOFs)是当今最具吸引力的多孔材料之一。将其微型化到纳米尺度——即纳米 MOFs——有望应用于从药物输送到膜的各种领域,为更传统的存储和催化应用开辟新途径,并能够创建复杂的超结构。在这里,我们报告了使用喷雾干燥作为一种通用方法来组装纳米 MOFs,得到直径小于 5 µm 的球形空心超结构。这种策略在概念上模仿了化学家用于限制材料合成的乳液,但不需要二次不混溶溶剂或表面活性剂。我们证明,所得的球形、空心超结构可以加工成稳定的胶体,通过超声处理将其解组装可以得到离散、均匀的纳米 MOFs。这种喷雾干燥策略能够构建多组分 MOF 超结构,并将客体物种封装在这些超结构中。我们预计这将为胶囊、反应器和复合材料提供新途径。