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配合物{[Zn(HFlu)_2(CHO_2)]·NO_3}_n的合成、表征及其晶体结构

Synthesis,Characterization,Crystal Structure of a New Zinc(Ⅱ) Coordination Complexes of Fluconazol
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摘要 用水热合成法以硝酸锌、氟康唑(HFlu)、甲酸为原料合成了一种新颖的配合物,利用单晶X射线、元素分析、等对配合物进行了表征.单晶X射线衍射分析的结果表明:标题化合物属于三斜晶系,空间群为P-1,晶胞参数为a=10.503(10),b=11.745(11),c=14.122(13),α=90.808(11),β=105.841(11),γ=101.996(11).锌采用六配位的模式,且位于变形的八面体中心,每个锌原子分别与4个各异氟康唑上的三氮唑[Zn-N=2,156(2)]的4-号氮原子以及两个甲酸根[Zn-O=2.086(2)或者是2.137(5)]进行配位. A coordination polymer containing divalent zinc,fluconazole,formic acid radical has been obtained by hydrothermal method.Its structure was determined by means of single-crystal X-ray diffraction analysis with the following crystal data:triclinic space group P-1,a = 10.503(10) ,b = 11.745(11) ,c= 14.122(13) ,α= 90.808(11) ,β= 105.841(11) ,γ= 101.996(11) .The mode of Zinc was Six coordination and located the center of distortion octahedral,Each zinc center was coordinated to four triazole nitrogen[Zn-N=2,156(2) ] atoms from distinct fluconazole ligands and a pair of formic acid radical[Zn-O=2.086(2)  or.137(5) ].
出处 《广西民族大学学报(自然科学版)》 CAS 2012年第1期84-87,共4页 Journal of Guangxi Minzu University :Natural Science Edition
基金 广西自然科学基金(0832080) 广西民族大学研究生教育创新计划项目(gxun-chx2011085)
关键词 晶体结构 氟康唑 配位聚合物 crystal structure fluconazole Zinc coordination polymer
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参考文献15

  • 1K. W. Brammer, P. E. Coates. Pharmaeokinetics of Fluconazole in Pediatric Patient[J]. Eur J. Clin. Microbiol. Infect. Dis. ,1994, 13(4) ,325--329.
  • 2M. Paula Cormick , Marisa Rovera , Edgardo N. Durantini. Syn- thesis, spectroscopic properties and photodynamic activity of a no- vel Zn(II) phthalocyanine substituted by fluconazole group[J]. Journal of Photochemistry and Photobiology A: Chemistry. 2008 (194) ,220--229.
  • 3Lei Zhang , Yun Ling , Feng Peng , Miao Du. Anion--tuned self--assembly of zinc (II) - flueonazole complexes: Crystal struc- tures, luminescent and thermal properties[J]. Journal of Molecu- lar Structure 2007 (829) ,161--167.
  • 4Zhang L, Ling Y, Peng F, et al. Anion tuned self -- assembly of Zn(II) fluconazole complexes : Crystal st ru ctures , luminescent and thermal properties[J]. J Mol Struct , in press.
  • 5Zhao X J, Wan g Q, Du M. Metal directed assembly of 1 - D and 2 --D coordination polymers with f luconazole and dicyanamide co --ligand[J]. Inorg Chim Act a, in press.
  • 6Han H, Song Y, Hou H, et al. A series of metal--organic poly- mers assembled from MCl2( M= Zn, Cd, Co, Cu) : Structures, third--order nonlinear optical and fluorescent propert ies[J]. Dal- ton Trans , 2006,1972.
  • 7J. Wang, S. Hu, M.L. Tong, Eur. J. Inorg[J]. Chem. (2006) 2069.
  • 8M.D. Fernandez, R. Bastida, A. Macias, P. Perez--Lourido, L. Valencia, Inorg[[J]. Chem. 45 (2006) 2266.
  • 9V.J. Catalano, A.L. Moore[J]. Inorg. Chem. 44 (2005)6558.
  • 10R.P. Feazell, C. E. Carson, K.K. Klausmeyer[J]. Inorg. Chem. 45 (2006)935.

二级参考文献32

  • 1Adams, H. , Clunas, S. , Fenton, D. E. et al. The systematic generation of monodentate bridging ethanoates in dinuclear nickel (II) complexes of asymmetric compartmental ligands [J]. J. Chem, Soc. , Dalton Trans. 2002, 441 - 448.
  • 2Rowsell, J. L. C. , Yaghi, O. M. Strategies for Hydrogen Stor- age in Metal--Organic Frameworks[J]. Angew. Chem. Int. Ed. 2005, 44, 4670-4679.
  • 3Tarulli, S. H. , Quinzani, O. V. , Piro, O. E. , Castellano, E. E. , Baran, E.J. Structural and spectroscopic characterization of bis(thiosaccharinato)bis(benzimidazole)cadmium(II)[J]. J. Mol. Struct., 2006, 797(1 - 3), 56 - 60.
  • 4Muniappan, S., Lipstman, S., George, S., and Goldberg, I. Porphyrin Framework Solids. Synthesis and Structure of Hybrid Coordination Polymers of Tetra(carboxyphenyl)porphyrins and Lanthanide-- Bridging Ions[J]. Inorg. Chem. 2007, 46, 5544- 5554.
  • 5Braverman, M. A. , Nettleman, J. H. , Supkowski, R. M. , and LaDuea, R. L. Copper Phthalate Coordination Polymers Incorpo- rating Kinked Dipyridyl Ligands: An Unprecedented 8--Connected Network and One--Dimensional Chiral Nanobarrels with Hydro- phobic Channels Constructed from Septuple Helical Motifs[J]. In- org. Chem. 2009, 48, 4918-4926.
  • 6Borisova, N. E. , Reshetova, M. D. , and Ustynyuk, Y.A. Metal --free methods in the synthesis of macroeyclie Schiff bases[J]. Chem. Rev. , 2007, 107, 46 - 79.
  • 7Deluzet, A. , Maudez, W. , Daiguebonne, C. , and Guillou, O. Interplane Distances Modulation in Lanthanide--Based Coordina- tion Polymers[J].Crystal Growth & Design, 2003, 3, 475-479.
  • 8Ciurtin, D. M. , Pschirer, N. G. , Smith, M. D. , Bunz, U. H. F. , and Zur Loye, H.C. Two luminescent coordination polymers with a triple-- helix structure: HgX2 (C31H24N2) · CH2Cl2 (X = Cl and Br)[J]. Chem. Mater., 2001, 13, 2743 -2745.
  • 9Sposato, L. K. , Nettleman, J. H. , Braverman, M. A. , Sup- kowski, R. M. , and LaDuca, R. L. Synthesis and Magnetic Prop- erties of Dual- Ligand Divalent Copper Coordination Polymers with Rhomboid Layer, Archimedean Grid, and Sell--Penetrated Network Topologies[J]. Crystal Growth & Design, 2010, 10, 335 -343.
  • 10Zakrzewski, G. , and Saceoni, L. Four--, ? ve and six--coordi- nated nickel(II) and cobalt(II) complexes of Schiff bases derived from pyridine--2--earboxaldehyde and N, N--substituted ethyl- enediamines[J]. Inorg. Chem. , 1968, 7, 1034 -1036.

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