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Isoreticular Metal-Organic Frameworks, Process for Forming the Same, and Systematic Design of Pore Size and Functionality Therein, with Application for Gas Storage.

机译:等网金属 - 有机框架,其形成过程,以及孔径和功能的系统设计,其应用于储气。

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The ability to design and construct solid-state materials with pre-determined structures is a grand challenge in chemistry. An inventive strategy based on reticulating metal ions and organic carboxylate links into extended networks has been advanced to a point that has allowed the design of porous structures in which pore size and functionality can be varied systematically. MOF-5, a prototype of a new class of porous materials and one that is constructed from octahedral Zn--O--C clusters and benzene links, was used to demonstrate that its 3-D porous system can be functionalized with the organic groups, --Br, --NH2, --OC(sub 3)H(sub 7), --OC(sub 5)H(sub 11), --H(sub 4)C(sub 2), and --H(sub 4)C(sub 4), and its pore size expanded with the long molecular struts biphenyl, tetrahydropyrene, pyrene, and terphenyl. The ability to direct the formation of the octahedral clusters in the presence of a desired carboxylate link is an essential feature of this strategy, which resulted in the design of an isoreticular (having the same framework topology) series of sixteen well-defined materials whose crystals have open space representing up to 91.1% of the crystal volume, and homogeneous periodic pores that can be incrementally varied from 3.8 to 28.8 angstroms.

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