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A new method to position and functionalize metal-organic framework crystals

机译:定位和功能化金属有机骨架晶体的新方法

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摘要

With controlled nanometre-sized pores and surface areas of thousands of square metres per gram, metal-organic frameworks (MOFs) may have an integral role in future catalysis, filtration and sensing applications. In general, for MOF-based device fabrication, well-organized or patterned MOF growth is required, and thus conventional synthetic routes are not suitable. Moreover, to expand their applicability, the introduction of additional functionality into MOFs is desirable. Here, we explore the use of nanostructured poly-hydrate zinc phosphate (α-hopeite) microparticles as nucleation seeds for MOFs that simultaneously address all these issues. Affording spatial control of nucleation and significantly accelerating MOF growth, these α-hopeite microparticles are found to act as nucleation agents both in solution and on solid surfaces. In addition, the introduction of functional nanoparticles (metallic, semiconducting, polymeric) into these nucleating seeds translates directly to the fabrication of functional MOFs suitable for molecular size-selective applications.
机译:具有可控制的纳米级孔隙和每克数千平方米的表面积,金属有机骨架(MOF)可能在未来的催化,过滤和传感应用中发挥不可或缺的作用。通常,对于基于MOF的器件制造,需要组织良好或有图案的MOF生长,因此常规的合成路线不适合。此外,为了扩展其适用性,需要在MOF中引入其他功能。在这里,我们探索使用纳米结构的多水合磷酸锌(α-铁磷铝矿)微粒作为MOF的成核种子,同时解决所有这些问题。这些α-堇青石微粒可承受成核作用的空间控制并显着加速MOF的生长,在溶液和固体表面均充当成核剂。另外,将功能性纳米颗粒(金属,半导体,聚合物)引入这些成核种子中,直接转化为适合分子大小选择应用的功能性MOF的制备。

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