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Designing Porous Materials to Resist Compression: Mechanical Reinforcement of a Zr-MOF with Structural Linkers

机译:设计多孔材料以抵抗压缩:用结构接头的Zr-MOF机械加固

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摘要

The performance of metal-organic frameworks (MOFs) under mechanical stress is an important consideration in the design, synthesis, and application of MOF materials in both fundamental and industrial settings. We herein demonstrate that the bulk modulus (K = -V dP/dV) of a 4,8-connected Zr-based MOF, NU-901, comprised of Zr6O8 nodes and tetratopic pyrene linkers, increases systematically upon postsynthetic installation of a structural organic linker, 2,6-naphthalenedi-carboxylic acid (NDC), via solvent assisted linker incorporation. We calculated the bulk modulus, a measure of resistance to hydrostatic compression, of these modified NU-901 samples through in situ variable powder X-ray diffraction pressure measurements collected using a synchrotron source. As the amount of NDC incorporation into the NU-901 framework increased, the lattice strength of the framework also increased. This strategy of postsynthetic modification at the molecular level serves as a promising blueprint to tune the bulk mechanical properties of other MOFs by increasing the connnectivity of the secondary building unit. Furthermore, we envision this method may allow for structural reinforcement of other frameworks along one preferential axis or direction dependent on the desired application.
机译:机械应力下的金属有机框架(MOF)的性能是在基本和工业环境中设计,合成和应用MOF材料的重要考虑因素。在本文中,我们证明了由Zr6O8节点和四灰肝芘接头组成的4,8连接的Zr的MOF,Nu-901的体积模量(k = -v dp / dv)系统地增加了结构有机的后合成安装接头,2,6-萘二甲酸(NDC),通过溶剂辅助接头掺入。我们计算了这些改性Nu-901样品的散装模量,抗静压压缩的抗性,通过使用同步射流源收集的原位可变粉末X射线衍射压力测量。随着NDC掺入NU-901框架的数量增加,框架的晶格强度也增加了。该策略在分子水平上用作有希望的蓝图,通过增加二级建筑单元的连接性来调谐其他MOF的体积力学性能。此外,我们设想该方法可以允许沿着一个优先轴或方向的其他框架的结构加强,而是取决于所需的应用。

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