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首页> 外文期刊>Inorganica Chimica Acta >DISSIMILARITIES IN TRANS-DI(4-METHOXYBENZOATO-O)-BIS(1,3-DIAMINOPROPANE-N,N')M(II) (M = CU, NI) COMPLEXES
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DISSIMILARITIES IN TRANS-DI(4-METHOXYBENZOATO-O)-BIS(1,3-DIAMINOPROPANE-N,N')M(II) (M = CU, NI) COMPLEXES

机译:反式-二(4-甲氧基苯甲酸-O)-双(1,3-二氨基丙烷-N,N')M(II)(M = CU,NI)络合物的不相似性

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The structures of trans-di (4-methoxybenzoato-O)bis(1,3-diaminopropane-N,N')Cu(II) (1) and the corresponding nickel(II) analogue (2) were determined by single-crystal X-ray diffraction methods. The compounds crystallise in the monoclinic system, space group P2(1)/a (No. 14). 1: C22H32CuN4O6, M-r = 514.25, a = 10.318(2), b = 9.620(2), c = 12.7296(14) Angstrom, beta = 103.910(14)degrees, V = 1226.5(4) Angstrom(3), Z = 2; 2: C22H32NiN4O6, M-r = 509.22, a = 10.100(2), b = 9.7220(11), c = 12.741(5) Angstrom, beta = 99.86(3)degrees, V = 1232.5(5) Angstrom(3), Z=2. The compounds display crystal chemical isotypism. They are composed of discrete complex units connected by hydrogen bonds mediated by amino and carboxylate groups. Each complex unit consists of a central metal ion located at a centre of symmetry, six-membered chelate rings formed by 1,3-diaminopropane and axially coordinated para-methoxybenzoate anions. The most notable difference between the nickel(II) and copper(II) complex units is found in the axial M-O bond lengths, which are 2.144(2) and 2.497(4) Angstrom, respectively. The EHMO calculations assisted by ESR and magnetic susceptibility measurements give the values of 7 and 1% for the d-s mixing to explain the axial elongation in 1 and 2, respectively. Another difference is seen in the different skewness of the chelate rings. Although the hydrogen bonding network is similar in both compounds, there are clear differences in the N-H stretchings in the IR spectra. Differences in the relative thermal motions of the non coordinated oxygen atoms of the carboxylate groups are probably dependent primarily on the central metal atom and secondarily on hydrogen bonding. (C) 1997 Elsevier Science S.A. [References: 37]
机译:通过单晶确定反式二(4-甲氧基苯并-O)双(1,3-二氨基丙烷-N,N')Cu(II)(1)和相应的镍(II)类似物(2)的结构X射线衍射法。这些化合物在单斜晶系空间群P2(1)/ a(No. 14)中结晶。 1:C22H32CuN4O6,Mr = 514.25,a = 10.318(2),b = 9.620(2),c = 12.7296(14)埃,beta = 103.910(14)度,V = 1226.5(4)埃(3),Z = 2; 2:C22H32NiN4O6,Mr = 509.22,a = 10.100(2),b = 9.7220(11),c = 12.741(5)埃,beta = 99.86(3)度,V = 1232.5(5)埃(3),Z = 2。该化合物显示晶体化学同型性。它们由通过氨基和羧酸根基团介导的氢键连接的离散复合单元组成。每个复合单元由位于对称中心的中心金属离子,由1,3-二氨基丙烷和轴向配位的对甲氧基苯甲酸酯阴离子形成的六元螯合环组成。镍(II)和铜(II)络合物单元之间最显着的差异是轴向M-O键长度,分别为2.144(2)和2.497(4)埃。由ESR和磁化率测量辅助的EHMO计算得出d-s混合的值分别为7%和1%,以分别说明1和2的轴向伸长率。另一个不同之处在于螯合环的偏斜度不同。尽管两种化合物中的氢键网络相似,但IR光谱中的N-H拉伸存在明显差异。羧酸根基团的非配位氧原子的相对热运动的差异可能主要取决于中心金属原子,其次取决于氢键。 (C)1997 Elsevier Science S.A. [参考:37]

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