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首页> 外文期刊>Inorganic Chemistry Communications >The synthesis, structure, and magnetic properties of a novel copper(II) cluster with H-bonding directed 3D-structure comprised of interconnected double-stranded ladders
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The synthesis, structure, and magnetic properties of a novel copper(II) cluster with H-bonding directed 3D-structure comprised of interconnected double-stranded ladders

机译:具有H键定向3D结构的新型铜(II)簇的合成,结构和磁性质,该3D结构由相互连接的双链梯子组成

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摘要

Reaction between 2,6-diformyl-4-methylphenol (DFMP) and tris(hydroxymethyl)aminomethane (THMAM) with copper(II) acetate and sodium azide formed the antiferromagnetically coupled, polymeric copper(II) coordination cluster {[(H5L)Cu2(μ-N3)]2[Cu(N3)4]·2CH3OH}_n (1), with a novel double-stranded ladder like structure in which [Cu(N3)4]~(2-) anions link single-chains comprised of dinuclear subunits, forming a 3D-structure of interconnected ladders through H-bonding. The 3D-structure is the result of coordinatively driven and hydrogen-bonding directed self-assembly.
机译:2,6-二甲酰基-4-甲基苯酚(DFMP)和三(羟甲基)氨基甲烷(THMAM)与乙酸铜(II)和叠氮化钠之间的反应形成反铁磁耦合的聚合铜(II)配位簇{[((H5L)Cu2 (μ-N3)] 2 [Cu(N3)4]·2CH3OH} _n(1),具有[Cu(N3)4]〜(2-)阴离子连接单链的新型双链梯状结构由双核亚基组成,通过H键形成相互连接的梯子的3D结构。 3D结构是协调驱动和氢键定向自组装的结果。

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