期刊文献+

三维超分子化合物[Zn(C_(13)H_(14)N_2)(C_8H_4O_4)]_n·0.5nH_2O的制备、晶体结构及性能研究

Synthesis,Crystal Structure and Property of Three-dimensional Supramolecular Complex[Zn(C_(13)H_(14)N_2)(C_8H_4O_4)]_n·0.5nH_2O
下载PDF
导出
摘要 用锌盐、BPP(BPP为1,3-(4-吡啶基)丙烷)、H2ip(H2ip为间苯二酸)反应制得具有金刚石拓扑结构的配位聚合物[Zn(C13H14N2)(C8H4O4)]n.0.5nH2O.利用红外光谱、元素分析、X射线单晶衍射、荧光光谱及热重分析对其进行表征.标题化合物的晶体结构属于单斜晶系,空间群为P 2(1)/n,晶胞参数a=1.104 18(13)nm,b=1.119 24(14)nm,c=1.573 45(18)nm,α=90(°),β=104.150(5)(°),γ=90(°),M r=436.75,V=1.885 5(4)nm3,Z=4,D c=1.539 m g.m-3,F(000)=900,GOF=1.073,R1=0.038 1,ωR2=0.1002. The reaction of Zn salts with BPP (BPP=1,3-bis(4-pyridyl)propane) and H2ip (ip=isophthalate) gave rise to diamondoid topological architecture, namely, [Zn(C13H14N2)(C8H4O4)]n·0.5nH2O. The complexes have been fully characterized by infrared spectroscopy, elemental analysis, single-crystal X-ray diffraction analysis, fluorescent spectrum and TGA. The crystal structure is of monoclinic,space group P2(1)/n , a=1.10418(13)nm,b=1.11924(14)nm,c=1.57345(18)nm,α=90(°),β=104.150(5)(°),γ=90(°),Mr=436.75,V=1.8855(4)nm^3,Z=4,Dc=1.539mg·m^-3,F(000)=900,GOF=1.073,R1=0.0381,ωR2-0.1002.
出处 《福建师范大学学报(自然科学版)》 CAS CSCD 北大核心 2006年第4期72-75,共4页 Journal of Fujian Normal University:Natural Science Edition
基金 福建省自然科学基金资助项目(E022002)
关键词 配位聚合物 自组装 锌配合物 晶体结构 coordination polymer self-assemble Zinc complex crystal structure
  • 相关文献

参考文献8

二级参考文献63

  • 1Vidal P L, Divisia-Blohorn B, Bidan G, et al. Conjugated polyrotaxanes incorporating mono- or divalent copper complexes[J]. Inorg Chem, 1999, 38: 4203-4210.
  • 2Schubert U S, Eisenbach C D. Block copolymers with double helical supramolecular segments[J]. Polym Preprints, 1999, 40: 222-223.
  • 3Marin V, Holder E, Schubert U S. Polymeric ruthenium bipyridine complexes: new potential materials for polymer solar cells[J]. J Polym Sci Polym Chem, 2004, 42: 374-385.
  • 4Wi-ghayoury A, Schenning A P H J, Hal P A, et al. Metallo-supramolecular oligo(p-phenylene vinylene) [60]fullerene architectures: Towards functional materials[J]. Thin Solid Films, 2002, 403-404: 97-101.
  • 5Volonia K, Thordarson P, Andres P R, et al. Polymer-protein giant amphiphiles by metal-to-ligand coordination[J]. Polym Preprints, 2003, 44: 648.
  • 6Brunsveld L, Folmer B J B, Meijer E W, et al. Supramolecular polymers[J]. Chem Rev, 2001, 101: 4071-4097.
  • 7Lehn J M. Supramolecular polymer chemistry-scope and perspectives[J]. Polym Int, 2002, 51: 825-839.
  • 8Ciferri A. Supramolecular polymerization[J]. Macromol Rapid Commun, 2002, 23: 511-529.
  • 9Lohmeijer B G G, Schubert U S. Playing LEGO with macromolecules: Design, sythesis, and self-organization with metal complexes[J]. J Polym Sci Polym Chem, 2003, 41: 1413-1427.
  • 10Schubert U S, Eschbaumer C E, Hochwimmer G. High yield synthesis of 5,5'-dimethyl-2,2′-bipyridine and 5,5″-dimethyl-2,2′:6′,2″-terpyridine and some bisfunctionalization reactions using N-bromosuccinimide[J]. Synthesis, 1999, (5): 779-782.

共引文献19

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部