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首页> 外文期刊>Angewandte Chemie >Morphological and Structural Evolutions of Metal-Organic Framework Particles from Amorphous Spheres to Crystalline Hexagonal Rods
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Morphological and Structural Evolutions of Metal-Organic Framework Particles from Amorphous Spheres to Crystalline Hexagonal Rods

机译:金属有机骨架颗粒从非晶球到六方晶棒的形貌和结构演变

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摘要

Compositions as well as morphologies and structures of particles are vital factors that define their properties and applications. However, the morphology and structure changes associated with the composition change of metal-organic frameworks (MOFs) are barely studied. Herein, we report the morphology and structure changes of MOF particles associated with the ratio of two organic linkers incorporated within MOF particles, when they are constructed from the reactions of In(NO3)(3) in the presence of isophthalic acid (H(2)IPA) and/or 1,4-benzenedicarboxylic acid (H2BDC). Two tendenciesthe tendency of BDC and In3+ to form porous crystalline hexagonal rods, and the tendency of IPA and In3+ to form non-porous amorphous spherical particlescompete during the formation of MOF particles. Eventually, the incorporated ratio of BDC and IPA within the MOF particles, and thus their morphology and porosity, are controlled by altering the relative amounts of H2BDC and H(2)IPA used during the reactions.
机译:颗粒的组成,形态和结构是决定其性质和应用的重要因素。然而,几乎没有研究与金属有机骨架(MOFs)的组成变化相关的形态和结构变化。在这里,我们报道了当In(NO3)(3)在间苯二甲酸(H(2)的存在下通过反应构建的MOF颗粒的形态和结构变化,该变化与掺入MOF颗粒中的两种有机连接基的比例有关。 )(IPA)和/或1,4-苯二甲酸(H2BDC)。在MOF颗粒形成过程中,BDC和In3 +形成多孔结晶六边形棒的趋势与IPA和In3 +形成无孔非晶球形颗粒的趋势有两种。最终,通过改变反应过程中使用的H2BDC和H(2)IPA的相对量,可以控制MOF颗粒中BDC和IPA的掺入比例,从而控制它们的形态和孔隙率。

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