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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 >Solid-state coordination chemistry: Structural influences of copper-phenanthroline subunits on oxovanadium organophosphonate phases. Hydrothermal synthesis and structural characterization of the two-dimensional materials [Cu(phen) (VO)(O3PCH2PO3)(H2O
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Solid-state coordination chemistry: Structural influences of copper-phenanthroline subunits on oxovanadium organophosphonate phases. Hydrothermal synthesis and structural characterization of the two-dimensional materials [Cu(phen) (VO)(O3PCH2PO3)(H2O

机译:固态配位化学:铜-菲咯啉亚基对氧代钒有机膦酸酯相的结构影响。二维材料[Cu(phen)(VO)(O3PCH2PO3)(H2O)的水热合成及结构表征

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The hydrothermal reactions of CuCl2. 2H(2)O, Na3VO4, 1,10-phenanthroline, and the appropriate organodiphosphonate ligand yield [Cu(phen)(VO)(O3PCH2PO3)(H2O)] (1), [{Cu(phen)}(2)(V2O5)(O3PCH2CH2PO3)] (2), [{Cu(phen)}(2)(V3O5)(O3PCH2CH2CH2PO3)] (H2O)]; (3) and [{Cu(phen)}(2)(V3O5)(O3PCH2PO3)(2)(H2O)] (4). Compounds 1-3 exhibit two-dimensional structures. The structures exhibit distinct vanadium building blocks: square pyramidal, mononuclear V(IV) Sites in 1, a binuclear unit of corner-sharing V(V) tetrahedra in 2, and a trinuclear unit of corner-sharing V(V) square pyramids and a V(IV) octahedron in 3. The network structures of 1 and 2 are constructed from one-dimensional oxovanadium-diphosphonate chains linked by Cu(ll) square pyramids into two-dimensional layers. In contrast, compound 3 exhibits a two-dimensional oxovanadium-organodiphosphonate network, with Cu(II) sites decorating the surfaces. Compound 4 is unique in exhibiting a framework structure, which may be described as a three-dimensional oxovanadium-organodiphosphonate substructure with {Cu(phen)}(2+) subunits covalently attached to the surface of channels running parallel to the a-axis. The magnetic properties of 1-4 are also correlated to the structural characteristics. The magnetic behavior of 2 is thus dominated by antiferromagnetic interactions. The magnetic behavior of 1 and 4 is consistent with the presence of two distinct paramagnetic metal ions, Cu(LI) and V(IV). In contrast, 3 does not exhibit ferrimagnetic behavior, but rather weak antiferromagnetic coupling. Crystal data: 1,C13H10N2CuP2VO8, monoclinic P2(1)/c, a = 9.0656(5) Angstrom, b = 8.6584(5) Angstrom, c = 20.934(1) Angstrom, beta = 97.306(1)degrees, Z = 4; 2, C26H20N4Cu2P2V2O11, triclinic P (1) over bar, a = 10.6096(5) Angstrom, b = 11.6951(5) Angstrom, c = 13.1796(6) Angstrom, a = 71.369(1)degrees, beta = 70.790(1)degrees, gamma = 80.738(1)degrees, Z = 2; 3, C30H28N4Cu2P4V3O18, triclinic P (1) over bar, a = 9.4356(6) Angstrom, b = 10.6556(6) Angstrom, c = 11.0354(7) Angstrom, alpha = 118.187(1)degrees, beta = 91.416(1)degrees, gamma = 107.821(1)degrees, Z = 1; 4, C26H20N4Cu2P4V3O18, monoclinic, P2(1)/c a = 8.3947(3) Angstrom, b = 16.8401(7) Angstrom, c = 11.9144(5) Angstrom, beta = 93.903(1)degrees, Z = 2. [References: 97]
机译:CuCl2的水热反应。 2H(2)O,Na3VO4、1,10-菲咯啉和适当的有机二膦酸酯配体收率[Cu(phen)(VO)(O3PCH2PO3)(H2O)](1),[{Cu(phen)}(2)( V2O5)(O3PCH2CH2PO3)](2),[{Cu(phen)}(2)(V3O5)(O3PCH2CH2CH2PO3)](H2O)]; (3)和[{Cu(phen)}(2)(V3O5)(O3PCH2PO3)(2)(H2O)](4)。化合物1-3表现出二维结构。这些结构展示出独特的钒构造块:1中的方形金字塔形,单核V(IV)位点,2中的角共享V(V)四面体的双核单元以及角共享V(V)方形金字塔的三核单元和3中的V(IV)八面体。1和2的网络结构由一维氧杂钒酸二膦酸酯链构成,这些链由Cu(II)方金字塔连接成二维层。相反,化合物3表现出二维的氧杂钒-有机二膦酸酯网络,其中Cu(II)位点装饰表面。化合物4在展现框架结构方面是独特的,该框架结构可以描述为具有{Cu(phen)}(2+)亚基的三维氧杂钒-有机二膦酸酯亚结构,该亚基共价连接到平行于a轴的通道表面。 1-4的磁性也与结构特征相关。因此,2的磁行为由反铁磁相互作用决定。 1和4的磁行为与两个不同的顺磁性金属离子Cu(LI)和V(IV)的存在一致。相反,3不表现出亚铁磁行为,而是弱的反铁磁耦合。晶体数据:1,C13H10N2CuP2VO8,单斜晶P2(1)/ c,a = 9.0656(5)埃,b = 8.6584(5)埃,c = 20.934(1)埃,beta = 97.306(1)度,Z = 4 ; 2,C26H20N4Cu2P2V2O11,斜线P(1)over bar,a = 10.6096(5)埃,b = 11.6951(5)埃,c = 13.1796(6)埃,a = 71.369(1)度,beta = 70.790(1)度,gamma = 80.738(1)度,Z = 2; 3,C30H28N4Cu2P4V3O18,斜线P(1)超过bar,a = 9.4356(6)埃,b = 10.6556(6)埃,c = 11.0354(7)埃,alpha = 118.187(1)度,beta = 91.416(1)度,gamma = 107.821(1)度,Z = 1; 4,C26H20N4Cu2P4V3O18,单斜晶,P2(1)/ ca = 8.3947(3)埃,b = 16.8401(7)埃,c = 11.9144(5)埃,beta = 93.903(1)度,Z =2。[参考: 97]

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