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A molecular porous zirconium-organic material exhibiting highly selective CO2 adsorption, high thermal stability, reversible hydration, facile ligand exchange and exclusive dimerization of phenylacetylene

机译:一种分子多孔锆有机材料,具有高选择性的CO2吸附,高的热稳定性,可逆的水合,易配体交换和苯乙炔的独家二聚作用

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摘要

A new molecular porous zirconium-organic material, Zr{[NC5H3(CO2)(2)](2)(OH2)(2)}center dot 1.3H(2)O (CAUMOF-12) has been synthesized by a hydrothermal reaction using Zr(NO3)(4), 2,6-NC5H3(CO2H)(2), HNO3 and water at 180 degrees C. Single-crystal X-ray diffraction was used to determine the crystal structure of the reported material. Although the material can be classified as a molecular compound, CAUMOF-12 exhibits a pseudo-three-dimensional open-framework structure with void spaces obtained by intermolecular hydrogen bonds. CAUMOF-12 reveals differential gas adsorption characteristics and high thermal stability. Reversible hydration, facile ligand exchange reactions, and exclusive dimerization of phenylacetylene for CAUMOF-12 are presented, as are electronic structure calculations.
机译:通过水热反应合成了一种新型的分子多孔锆有机材料Zr {[NC5H3(CO2)(2)](2)(OH2)(2)}中心点1.3H(2)O(CAUMOF-12)在180摄氏度下使用Zr(NO3)(4),2,6-NC5H3(CO2H)(2),HNO3和水。使用单晶X射线衍射确定所报告材料的晶体结构。尽管该材料可以分类为分子化合物,但CAUMOF-12表现出具有通过分子间氢键获得的空隙的拟三维开放框架结构。 CAUMOF-12具有不同的气体吸附特性和高热稳定性。提出了CAUMOF-12的可逆水合,易配体交换反应和苯乙炔的独家二聚作用,以及电子结构计算。

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