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A route to high surface area, porosity and inclusion of large molecules in crystals

机译:高表面积,晶体孔隙率和晶体中的大分子的途径

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摘要

One of the outstanding challenges in the field of porous materials is the design and synthesis of chemical structures with exceptionally high surface areas(1). Such materials are of critical importance to many applications involving catalysis, separation and gas storage. The claim for the highest surface area of a disordered structure is for carbon, at 2,030 m(2) g(-1) (ref. 2). Until recently, the largest surface area of an ordered structure was that of zeolite Y, recorded at 904 m(2) g(-1) (ref. 3). But with the introduction of metal-organic framework materials, this has been exceeded, with values up to 3,000 m(2) g(-1) (refs 4-7). Despite this, no method of determining the upper limit in surface area for a material has yet been found. Here we present a general strategy that has allowed us to realize a structure having by far the highest surface area reported to date. We report the design, synthesis and properties of crystalline Zn4O(1,3,5-benzenetribenzoate)(2), a new metal-organic framework with a surface area estimated at 4,500 m(2) g(-1). This framework, which we name MOF-177, combines this exceptional level of surface area with an ordered structure that has extra-large pores capable of binding polycyclic organic guest molecules-attributes not previously combined in one material.
机译:多孔材料领域的出色挑战之一是设计和合成具有异常高表面积(1)的化学结构。这些材料对涉及催化,分离和储气储存的许多应用是至关重要的。对无序结构的最高表面积的权利要求用于碳,2,030μm(2)g(-1)(参考2)。直到最近,有序结构的最大表面区域是沸石Y的,记录在904m(2)g(-1)(参考文献3)。但随着金属 - 有机框架材料的引入,这已被超过,值高达3,000米(2)G(-1)(refs 4-7)。尽管如此,但尚未找到确定材料表面积上限的方法。在这里,我们提出了一项一般的策略,使我们能够实现迄今为止报告的最高表面积具有迄今为止的结构。我们报告了结晶Zn4O(1,3,5-苯四苯甲酸盐)(2)的设计,合成和性质,一种新的金属 - 有机骨架,表面积估计为4,500m(2)g(-1)。我们命名MOF-177的该框架将这种卓越的表面积水平与有序结构相结合,该结构具有高度大的孔,能够将未以前组合在一种材料中的多环有机客体分子属性结合。

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