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Functional Metal Organic Framework/SiO2 Nanocomposites: From Versatile Synthesis to Advanced Applications

机译:功能金属有机骨架/ SiO2纳米复合材料:从多功能合成到高级应用

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摘要

Metal organic frameworks (MOFs), also called porous coordination polymers, have attracted extensive attention as molecular-level organic-inorganic hybrid supramolecular solid materials bridged by metal ions/clusters and organic ligands. Given their advantages, such as their high specific surface area, high porosity, and open active metal sites, MOFs offer great potential for gas storage, adsorption, catalysis, pollute removal, and biomedicine. However, the relatively weak stability and poor mechanical property of most MOFs have limited the practical application of such materials. Recently, the combination of MOFs with inorganic materials has been found to provide a possible strategy to solve such limitations. Silica, which has excellent chemical stability and mechanical properties, shows great advantages in compounding with MOFs to improve their properties and performance. It not only provides structured support for MOF materials but also improves the stability of materials through hydrophobic interaction or covalent bonding. This review summarizes the fabrication strategy, structural characteristics, and applications of MOF/silica composites, focusing on their application in chromatographic column separation, catalysis, biomedicine, and adsorption. The challenges of the application of MOF/SiO composites are addressed, and future developments are prospected.
机译:金属有机骨架(MOF),也称为多孔配位聚合物,已经引起了广泛的关注,因为分子级的有机-无机杂化超分子固体材料由金属离子/簇和有机配体桥接。鉴于其优势,例如高比表面积,高孔隙率和开放的活性金属位点,MOF在气体存储,吸附,催化,去除污染物和生物医学方面具有巨大潜力。但是,大多数MOF相对较弱的稳定性和较差的机械性能限制了此类材料的实际应用。近来,已经发现MOF与无机材料的结合提供了解决这种局限性的可能策略。具有优异的化学稳定性和机械性能的二氧化硅在与MOF混合以改善其性能和性能方面显示出巨大的优势。它不仅为MOF材料提供结构化支撑,而且通过疏水相互作用或共价键合提高了材料的稳定性。这篇综述总结了MOF /二氧化硅复合材料的制备策略,结构特征和应用,重点介绍了它们在色谱柱分离,催化,生物医学和吸附中的应用。解决了MOF / SiO复合材料应用的挑战,并展望了未来的发展。

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