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Iron and Porphyrin Metal-Organic Frameworks: Insight into Structural Diversity, Stability, and Porosity

机译:铁和卟啉金属有机骨架:洞察结构的多样性,稳定性和孔隙度

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Reaction of iron(IIII)chloride with the free base tetrakis(4-carboxyphenyl)porphyrin (H2TCPP) in the presence of different bases leads to the formation of a series of iron/porphyrin metal-organic frameworks. Such a crystal engineering approach led to the obtaining of four structures presenting three different topologies and inorganic secondary building units. Depending on the synthesis conditions, isolated Fe-III octahedra, diiron(II) paddle wheel dimers, or extended [Fe-III(OH)O-4](n) chains could be obtained in a controlled manner. The influence of the synthetic conditions on the final structure and the oxidation state of iron is discussed. Stability of the porous solids towards air and water is studied, and their intrinsic porosity is assessed.
机译:氯化铁(IIII)与游离碱四(4-羧基苯基)卟啉(H2TCPP)在不同碱存在下的反应导致形成一系列铁/卟啉金属-有机骨架。这种晶体工程方法导致获得具有三种不同拓扑和无机二级建筑单元的四个结构。取决于合成条件,可以以受控方式获得分离的Fe-III八面体,二铁(II)桨轮二聚体或延伸的[Fe-III(OH)O-4](n)链。讨论了合成条件对铁的最终结构和氧化态的影响。研究了多孔固体对空气和水的稳定性,并评估了其固有的孔隙率。

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