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Block co-polyMOFs: morphology control of polymer–MOF hybrid materials

机译:嵌段共聚MOF:聚合物-MOF杂化材料的形貌控制

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摘要

The hybridization of block copolymers and metal–organic frameworks (MOFs) to create novel materials (block co-polyMOFs, BCPMOFs) with controlled morphologies is reported. In this study, block copolymers containing poly(1,4-benzenedicarboxylic acid, H2bdc) and morphology directing poly(ethylene glycol) (PEG) or poly(cyclooctadiene) (poly(COD)) blocks were synthesized for the preparation of BCPMOFs. Block copolymer architecture and weight fractions were found to have a significant impact on the resulting morphology, mediated through the assembly of polymer precursors prior to MOF formation, as determined through dynamic light scattering. Simple modification of block copolymer weight fraction allowed for tuning of particle size and morphology with either faceted and spherical features. Modification of polymer block architecture represents a simple and powerful method to direct morphology in highly crystalline polyMOF materials. Furthermore, the BCPMOFs could be prepared from both Zr4+ and Zn2+ MOFs, yielding hybrid materials with appreciable surface areas and tuneable porosities. The resulting Zn2+ BCPMOF yielded materials with very narrow size distributions and uniform cubic morphologies. The use of topology in BCPMOFs to direct morphology in block copolymer assemblies may open new methodologies to access complex materials far from thermodynamic equilibrium.
机译:据报道,嵌段共聚物与金属-有机骨架(MOF)发生杂交,以形成具有受控形态的新型材料(嵌段共聚MOF,BCPMOF)。在这项研究中,合成了包含聚(1,4-苯二甲酸,H2bdc)和形态定向聚(乙二醇)(PEG)或聚(环辛二烯)(poly(COD))嵌段的嵌段共聚物,以制备BCPMOF。发现嵌段共聚物的结构和重量分数对所得形态具有显着影响,这是通过动态光散射确定的,在MOF形成之前,通过聚合物前体的组装来介导的。嵌段共聚物重量分数的简单改变允许调节具有小平面和球形特征的粒度和形态。聚合物嵌段结构的修饰代表了一种简单而有效的方法,可用于指导高度结晶的polyMOF材料中的形态。此外,可以用Zr 4 + 和Zn 2 + MOF制备BCPMOF,从而得到具有明显表面积和可调节孔隙率的杂化材料。所得的Zn 2 + BCPMOF产生的材料具有非常窄的尺寸分布和均匀的立方形貌。在BCPMOF中使用拓扑结构来指导嵌段共聚物组件中的形态可能会开辟新的方法来访问远离热力学平衡的复杂材料。

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