El-Gamel Nadia E A
Chemistry Department, Faculty of Science, Cairo University, Giza, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2007 Nov;68(3):860-6. doi: 10.1016/j.saa.2006.12.071. Epub 2007 Jan 12.
Ternary Fe(III), Co(II), Ni(II), Cu(II), Zn(II) and UO(2)(II) chelates with tenoxicam (Ten) drug (H(2)L(1)) and dl-alanine (Ala) (HL(2)) and also the binary UO(2)(II) chelate with Ten were studied. The structures of the chelates were elucidated using elemental, molar conductance, magnetic moment, IR, diffused reflectance and thermal analyses. UO(2)(II) binary chelate was isolated in 1:2 ratio with the formula UO(2)(H(2)L)(2)(2). The ternary chelates were isolated in 1:1:1 (M:H(2)L(1):L(2)) ratios and have the general formulae [M(H(2)L(1))(L(2))(Cl)(n)(H(2)O)(m)].yH(2)O (M=Fe(III) (n=2, m=0, y=2), Co(II) (n=1, m=1, y=2) and Ni(II) (n=1, m=1, y=3)); M(H(2)L(1))(L(2))(z).yH(2)O (M=Cu(II) (X=AcO, z=1, y=0), Zn(II) (X=AcO, z=1, y=3) and UO(2)(II) (X=NO(3), z=1, y=2)). IR spectra reveal that Ten behaves as a neutral bidentate ligand coordinated to the metal ions via the pyridine-N and carbonyl-O groups, while Ala behaves as a uninegatively bidentate ligand coordinated to the metal ions via the deprotonated carboxylate-O and amino-N. The magnetic and reflectance spectral data confirm that all the chelates have octahedral geometry except Cu(II) and Zn(II) chelates have tetrahedral structures. Thermal decomposition of the chelates was discussed in relation to structure and different thermodynamic parameters of the decomposition stages were evaluated.
研究了铁(III)、钴(II)、镍(II)、铜(II)、锌(II)和铀酰(II)与替诺昔康(Ten)药物(H₂L₁)、dl-丙氨酸(Ala)(HL₂)形成的三元螯合物,以及铀酰(II)与替诺昔康形成的二元螯合物。通过元素分析、摩尔电导率、磁矩、红外光谱、漫反射光谱和热分析等方法阐明了螯合物的结构。铀酰(II)二元螯合物以1:2的比例分离得到,化学式为UO₂(H₂L)₂₂。三元螯合物以1:1:1(M:H₂L₁:L₂)的比例分离得到,通式为[M(H₂L₁)(L₂)(Cl)ₙ(H₂O)ₘ]·yH₂O(M = 铁(III)(n = 2,m = 0,y = 2),钴(II)(n = 1,m = 1,y = 2)和镍(II)(n = 1,m = 1,y = 3));M(H₂L₁)(L₂)ₓ·yH₂O(M = 铜(II)(X = AcO,x = 1,y = 0),锌(II)(X = AcO,x = 1,y = 3)和铀酰(II)(X = NO₃,x = 1,y = 2))。红外光谱表明,替诺昔康作为中性双齿配体,通过吡啶-N和羰基-O基团与金属离子配位,而丙氨酸作为单负双齿配体,通过去质子化的羧酸根-O和氨基-N与金属离子配位。磁性和反射光谱数据证实,除铜(II)和锌(II)螯合物具有四面体结构外,所有螯合物均具有八面体几何结构。讨论了螯合物的热分解与结构的关系,并评估了分解阶段的不同热力学参数。