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Effect of Diamine in Amine-Functionalized MIL-101 for Knoevenagel Condensation

机译:二胺在胺功能化MIL-101中对Knoevenagel缩合的影响

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摘要

Crystalline Metal-Organic Frameworks (MOFs) are currently an important kind of advanced functional materials due to their novel coordination structures, diverse topologies, and potential applications. As one of topical MOFs, porous chromium terephthalate with giant pores labeled MIL-101(Cr) possesses several unique features such as hierarchical pore structure including a mesoporous zeotype architecture, mesoporous cages and microporous windows, outstanding sorption properties, numerous unsaturated metal cation sites, and high hydrothermal and chemical stability. These properties have led to a number of application potential in catalysis, gas storage, drug delivery and adsorptive separation. One important challenge has to realize is funtionalization via incorporation of binding site or reactive centers for catalysis. The functionalization methods of metal organic frameworks (MOFs) in a wide range of applications are two possible approaches including pre- and post-modification with functional groups.
机译:结晶金属有机框架(MOF)由于其新颖的配位结构,多样的拓扑结构和潜在的应用,目前是一种重要的高级功能材料。作为局部MOF之一,带有标为MIL-101(Cr)的巨大孔的多孔对苯二甲酸铬具有多种独特的功能,例如分层的孔结构,包括中孔沸石型结构,中孔笼和微孔窗,出色的吸附性能,许多不饱和金属阳离子位,以及高水热和化学稳定性。这些特性在催化,气体存储,药物输送和吸附分离方面具有许多应用潜力。必须认识到的一个重要挑战是通过结合结合位点或反应中心进行催化的功能化。金属有机骨架(MOF)在广泛应用中的功能化方法是两种可能的方法,包括使用官能团进行的预修饰和后修饰。

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