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Chromium(II) Metal-Organic Polyhedra as Highly Porous Materials

机译:铬(II)金属 - 有机多面体作为高度多孔材料

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Herein we report for the first time the synthesis of Cr(II)-based metal organic polyhedra (MOPs) and the characterization of their porosities. Unlike the isostructural Cu(II)- or Mo(II)-based MOPs, Cr(II)-based MOPs show unusually high gas uptakes and surface areas. The combination of comparatively robust dichromium paddlewheel units (Cr, units), cage symmetries, and packing motifs enable these materials to achieve Brunauer-Emmett-Teller surface areas of up to 1000 m(2)/g. Reducing the aggregation of the Cr(II)-based MOPs upon activation makes their pores more accessible than their Cu(II) or Mo(II) counterparts. Further comparisons of surface areas on a molar (m(2)/mol cage) rather than gravimetric (m(2)/g) basis is proposed as a rational method of comparing members of a family of related molecular materials.
机译:在此,我们首次报告Cr(II)的基于金属有机多面体(MOP)的合成及其孔隙症的表征。 与IsoStrontuctuculy Cu(II) - 或Mo(II) - 基于MOPS,基于MOPS的CR(II),MOPS展示了异常高的气体摄取和表面积。 相对稳健的二色地旋转轮单元(CR,单位),笼式对称和包装图案的组合使这些材料能够实现高达1000米(2)/ g的Brunauer-Emmett-Theer Surface区域。 在活化时减少CR(II)的聚集使其孔隙比它们的Cu(II)或Mo(II)对应物更容易进入。 提出了摩尔(M(2)/ mol笼中的表面区域的表面积比较(M(2)/ g)的基础,作为比较相关分子材料家族成员的合理方法。

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