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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 >Hydrothermal syntheses, crystal structures, and properties of two-dimensional homo- and heterometallic cyanide-bridged complexes: [Cu-2(CN)(2)(bpym)] and [Fe(bipy)(2)(CN)(4)Cu-2] (bpym=2,2 '-bipyrimidine, bipy=2,2 '-bipyridine)
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Hydrothermal syntheses, crystal structures, and properties of two-dimensional homo- and heterometallic cyanide-bridged complexes: [Cu-2(CN)(2)(bpym)] and [Fe(bipy)(2)(CN)(4)Cu-2] (bpym=2,2 '-bipyrimidine, bipy=2,2 '-bipyridine)

机译:二维均相和异金属氰化物桥联络合物的水热合成,晶体结构和性质:[Cu-2(CN)(2)(bpym)]和[Fe(bipy)(2)(CN)(4) Cu-2](bpym = 2,2'-联吡啶,bipy = 2,2'-联吡啶)

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摘要

The hydrothermal reaction of K-3[Fe(CN)(6)], CuCl2, and 2,2'-bipyridine (bipy) resulted in the formation of a 2D cyanide-bridged heterobimetallic Fe(II)-Cu(I) complex, [Fe(bipy)(2)(CN)(4)Cu-2], 1. Working in the same conditions, but using 2,2'-bipyrimidine (bpym) instead of bipy and methanol as solvent, we obtained the homometallic Cu(I) complex [Cu-2(CN)(2)(bpym)](2), 2. The structure of 1 consists of cyanide-bridged Fe(II)-Cu(I) layers, constructed from alternately fused 6 (Fe2Cu4) and 10 (Fe2Cu8) metal-membered centrosymmetric rings, in which copper(I) and iron(II) ions exhibit distorted trigonal planar and octahedral cooordination environments, respectively. The formation of 1 can be explained by assuming that, under high pressure and temperature, iron(III) and copper(II) ions are reduced with the simultaneous and/or subsequent substitution of four cyanide ligands by two bipy molecules in the ferricyanide anions. It is interesting to note that 1 is the first cyanide-bridged heterobimetallic complex prepared by solvothermal methods. The structure of 2 consists of neutral 2D honeycomb layers constructed from fused Cu-6(CN)(4)(bpym)(2) rings, in which copper(I) atoms exhibit distorted tetrahedral geometry. The isolation of 1 and 2, by using K-3[Fe(CN)(6)] as starting material, demonstrates that hydrothermal chemistry can be used not only to prepare homometallic materials but also to prepare cyanide-bridged bimetallic materials. The temperature dependence of chi(M)T and Mossbauer measurements for 1 reveal the existence of a high spin <----> low spin equilibrium involving the Fe(II) ions. [References: 40]
机译:K-3 [Fe(CN)(6)],CuCl2和2,2'-联吡啶(bipy)的水热反应导致形成2D氰化物桥联的杂双金属Fe(II)-Cu(I)络合物,[Fe(bipy)(2)(CN)(4)Cu-2],1.在相同条件下,但使用2,2'-联嘧啶(bpym)代替联吡啶和甲醇作为溶剂,我们获得了同金属Cu(I)配合物[Cu-2(CN)(2)(bpym)](2),2。1的结构由氰化物桥接的Fe(II)-Cu(I)层组成,由交替熔融构成6(Fe2Cu4)和10(Fe2Cu8)金属成员中心对称环,其中铜(I)和铁(II)离子分别呈现变形的三角形平面和八面体配位环境。可以通过假设在高压和高温下还原铁(III)和铜(II)离子,同时和/或随后用铁氰化物阴离子中的两个联吡啶分子取代四个氰化物配体的情况下解释1的形成。有趣的是,1是通过溶剂热法制备的第一个氰化物桥联的异双金属配合物。 2的结构由由稠合的Cu-6(CN)(4)(bpym)(2)环构成的中性2D蜂窝层组成,其中铜(I)原子呈现扭曲的四面体几何形状。通过使用K-3 [Fe(CN)(6)]作为原料对1和2进行分离,证明水热化学不仅可以用于制备均金属材料,而且可以用于制备氰化物桥联的双金属材料。 1的chi(M)T和Mossbauer测量值的温度依赖性揭示了涉及Fe(II)离子的高自旋<---->低自旋平衡的存在。 [参考:40]

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