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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Alkali Metal Ion Templated Transition Metal Formate Framework Materials:Synthesis, Crystal Structures, Ion Migration, and Magnetism
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Alkali Metal Ion Templated Transition Metal Formate Framework Materials:Synthesis, Crystal Structures, Ion Migration, and Magnetism

机译:碱金属离子模板化过渡金属甲酸酯骨架材料:合成,晶体结构,离子迁移和磁性

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摘要

Four transition metal formate coordination polymers with anionic frameworks, namely, Na[Mn(HCOO)_3], K[Mn(HCOO)_3], Na_2[Cu_3(HCOO)_8], and K_2[Cu_5(HCOO)_(12)], were synthesized using a mild solution chemistry approach. Multitemperature single-crystal (100-300 K) and powder Xray diffraction studies of the compounds reveal structures of large diversity ranging from cubic chiral Na-Mn formate to triclinic Na-Cu formate. The structural variety is caused by the nature of the transition metals, the alkali metal ion templation, and the versatility of the formate group, which offers metal-metal coordination through three different O-C-O bridging modes (syn-syn, syn-anti, anti- anti) in addition to metal-metal bridging via a single oxygen atom. The two manganese(II) compounds contain mononuclear, octahedrally coordinated moieties, but the three-dimensional connectivity between the manganese octahedra is very different in the two structures. The two copper frameworks, in contrast, consist of binuclear and mononuclear moieties (Na-Cu formate) and trinuclear and mononuclear moieties (K-Cu formate), respectively. Procrystal electron density analysis of the compounds indicates one-dimensional K~+-ion conductivity in K-Mn and K-Cu, and the nature of the proposed potassium ion migration is compared with results from similar analysis on known Na~+ and K~+ ion conductors. K-Mn and Na-Mn were tested as cathode materials, but this resulted in poor reversibility due to low conductivity or structural collapse. The magnetic properties of the compounds were studied by vibrating sample magnetometric measurements, and their thermal stabilities were determined by thermogravimetric analysis and differential thermal analysis. Despite structural differences, the metal formates that contain the same transition metal have similar magnetic properties and thermal decomposition pathways, that is, the nature of the transition metal controls the compound properties.
机译:具有阴离子骨架的四种过渡金属甲酸盐配位聚合物,即Na [Mn(HCOO)_3],K [Mn(HCOO)_3],Na_2 [Cu_3(HCOO)_8]和K_2 [Cu_5(HCOO)_(12)用温和的溶液化学方法合成[]。化合物的多温度单晶(100-300 K)和粉末X射线衍射研究显示,化合物的结构具有很大的多样性,从立方手性的Na-Mn甲酸到三斜晶的Na-Cu甲酸。结构的变化是由过渡金属的性质,碱金属离子模板和甲酸酯基团的多功能性引起的,甲酸酯基团通过三种不同的OCO桥接模式(syn-syn,syn-anti,anti-anti-反),以及通过单个氧原子的金属-金属桥联。两种锰(II)化合物均包含单核,八面体配位的部分,但锰八面体之间的三维连通性在两种结构中非常不同。相比之下,两个铜骨架分别由双核和单核部分(甲酸钠铜)和三核和单核部分(甲酸铜)组成。化合物的前晶电子密度分析表明,在K-Mn和K-Cu中具有一维K〜+离子电导率,并将拟议的钾离子迁移性质与已知Na〜+和K〜的相似分析结果进行了比较。 +离子导体。测试了K-Mn和Na-Mn作为阴极材料,但是由于电导率低或结构崩溃,导致可逆性差。通过振动样品的磁力测量法研究了化合物的磁性,并通过热重分析和差热分析确定了它们的热稳定性。尽管存在结构差异,但是包含相同过渡金属的金属甲酸盐具有相似的磁性和热分解途径,也就是说,过渡金属的性质控制着化合物的性质。

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