Barcus Kyle, Lin Po-An, Zhou Yilong, Arya Gaurav, Cohen Seth M
Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California92093, United States.
Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina27710, United States.
ACS Nano. 2022 Nov 22;16(11):18168-18177. doi: 10.1021/acsnano.2c05175. Epub 2022 Oct 17.
Polymer-grafted metal-organic frameworks (MOFs) can combine the properties of MOFs and polymers into a single, matrix-free composite material. Herein, we examine polymer-grafted MOF particles (using UiO-66 as a model system) to examine how the molecular weight, grafting density, and chemical functionality of the polymer graft affects the preparation of free-standing self-assembled MOF monolayers (SAMMs). The physical properties of the monolayers are influenced by the choice of polymer, and robust, flexible monolayers were achieved more readily with poly(methyl acrylate) when compared to poly(methyl methacrylate) or poly(benzyl methacrylate). Molecular dynamics simulations were carried out to provide insights into the orientation and ordering of MOFs in the monolayers with respect to MOF size, graft length, and hydrophobicity. The relationship between molecular weight and graft density of the polymer brush was investigated and related to polymer brush conformation, offering design rules for further optimizations to balance mechanical strength, MOF weight fraction, and processability for this class of hybrid materials.
聚合物接枝的金属有机框架(MOF)可以将MOF和聚合物的特性结合到一种无基质的单一复合材料中。在此,我们研究聚合物接枝的MOF颗粒(以UiO-66作为模型体系),以考察聚合物接枝的分子量、接枝密度和化学官能团如何影响独立自组装MOF单分子层(SAMM)的制备。单分子层的物理性质受聚合物选择的影响,与聚甲基丙烯酸甲酯或聚甲基丙烯酸苄酯相比,聚甲基丙烯酸甲酯更容易形成坚固、柔韧的单分子层。进行了分子动力学模拟,以深入了解单分子层中MOF相对于MOF尺寸、接枝长度和疏水性的取向和有序性。研究了聚合物刷的分子量与接枝密度之间的关系,并将其与聚合物刷构象相关联,为进一步优化此类杂化材料的机械强度、MOF重量分数和可加工性提供了设计规则。