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Hybrid Materials Based on a Terpyridine Carboxylate Ligand: A Method for Introducing Light Harvesting and Auxiliary Metal Centers into Metal-Organic Frameworks

机译:基于三联吡啶羧酸盐配体的杂化材料:一种将光收集和辅助金属中心引入金属有机骨架的方法

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摘要

Metal-organic frameworks (MOFs) are attractive canditates for hydrogen storage and photovoltaic applications owing to their extremely high surface area (often exceeding 1,000 m2/g), and tunable chemical functionality.[1-3] Although the hydrogen storage capacity of MOFs has been extensively explored, the design of MOFs for photovoltaic applications is still in its infancy. In this work, a method for introducing light-harvesting and auxiliary metal centers (for hydrogen storage) into metal-organic frameworks is proposed. Toward this goal, nine metal-organic materials based on 4'-(4-carboxyphenyl)-2,2':6',2"-terpyridine[4] (HL) were synthesized and structurally characterized by single crystal X-ray diffraction. Two of these materials which exhibit channels greater than one nanometer in diameter were fully characterized by TGA, EA, and PXRD. Additionally, a number of discrete [M(L)2] complexes were synthesized and the photoactive ruthenium complex, [Ru(HL)2][PF6]2, was reacted with metal salts under solvothermal conditions. Evidence is presented which indicates the air-sensitive crystals produced by reaction of this complex with zinc(II) ions in N,N-dimethylformamide have the same topology as the large-pore metal-organic framework, MOF-5.[5] Further studies to reveal the potential of this type of material in photocells are proposed.
机译:金属有机骨架(MOF)具有极高的表面积(通常超过1,000 m2 / g)和可调节的化学功能性,因此在氢存储和光伏应用中是有吸引力的候选对象。[1-3]尽管MOF的氢存储能力具有经过广泛探索,用于光伏应用的MOF的设计仍处于起步阶段。在这项工作中,提出了一种将集光和辅助金属中心(用于储氢)引入金属有机骨架的方法。为此,合成了9种基于4'-(4-羧基苯基)-2,2':6',2“-三联吡啶[4](HL)的金属有机材料,并通过单晶X射线衍射对其结构进行了表征。TGA,EA和PXRD完全表征了其中两种通道直径大于1纳米的材料,此外,还合成了许多离散的[M(L)2]配合物和光敏钌配合物[Ru( HL)2] [PF6] 2在溶剂热条件下与金属盐反应,显示该络合物与N,N-二甲基甲酰胺中的锌(II)离子反应生成的空气敏感晶体具有相同的拓扑结构作为大孔金属有机框架,MOF-5。[5]提出了进一步的研究来揭示这种材料在光电池中的潜力。

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    Norton George K;

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  • 年度 2009
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