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Evolution of an Adenine–Copper Cluster to a Highly Porous Cuboidal Framework: Solution-Phase Ripening and Gas-Adsorption Properties

机译:腺嘌呤-铜团簇向高多孔长方体框架的演化:溶液相成熟和气体吸附特性

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摘要

The synthesis and directed evolution of a tetranuclear copper cluster, supported by 8-mercapto-N9-propyladenine ligand, to a highly porous three-dimensional cubic framework in the solid state is reported. The structure of this porous framework was unambiguously characterized by Xray crystallography. The framework contains about 62 solvent- accessible void; the presence of a free exocyclic amino group in the porous framework facilitates reversible adsorption of gas and solvent molecules. Oriented growth of framework in solution was also tracked by force and scanning electron microscopy studies, leading to identification of an intriguing ripening process, over a period of 30 days, which also revealed formation of cuboidal aggregates in solution. The elemental composition of these cuboidal aggregates was ascertained by EDAX analysis.
机译:报道了由8-巯基-N9-丙基腺嘌呤配体支持的四核铜团簇在固态下合成和定向演化为高度多孔的三维立方框架。这种多孔框架的结构被X射线晶体学明确表征。该框架含有约62%的溶剂可及空隙;多孔框架中游离外环氨基的存在有利于气体和溶剂分子的可逆吸附。还通过力和扫描电子显微镜研究跟踪了溶液中骨架的定向生长,从而确定了在30天内有趣的成熟过程,这也揭示了溶液中长方体聚集体的形成。通过EDAX分析确定了这些长方体聚集体的元素组成。

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