Three-dimensional structure of nanocomposites from atomic pair distribution function analysis:: Study of polyaniline and (polyaniline)0.5V2O5•1.0H2O

被引:50
|
作者
Petkov, V [1 ]
Parvanov, V
Trikalitis, P
Malliakas, C
Vogt, T
Kanatzidis, MG
机构
[1] Cent Michigan Univ, Dept Phys, Mt Pleasant, MI 48859 USA
[2] Michigan State Univ, Dept Chem, E Lansing, MI 48824 USA
[3] Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA
关键词
D O I
10.1021/ja051315n
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The three-dimensional structures of emeraldine base polyaniline (PANI) and (polyaniline)(0.5)V(2)O(5.)1.0H(2)O have been determined by total X-ray scattering experiments. Atomic pair distribution functions (PDF) were measured to obtain experimental observables against which structural models were tested and refined. The PDF approach is necessary because of the limited structural coherence in these nanostructured materials. Polyaniline possesses a well-defined local atomic arrangement that can be described in terms of an 84-atom orthorhombic unit cell. The nanocomposite (PANI)(0.5)V2O5 center dot 1.0H(2)O too is locally well ordered and may be described in terms of a small number of structure-sensible parameters. The PDF approach allows the construction of structure models of PANI and (PANI)(0.5)V2O5 center dot 1.0H(2)O on the basis of which important materials' properties can be explained predicted and possibly improved.
引用
收藏
页码:8805 / 8812
页数:8
相关论文
共 50 条
  • [1] XANES study of polyaniline-V2O5 and sulfonated polyaniline-V2O5 nanocomposites
    Huguenin, F
    Ticianelli, EA
    Torresi, RM
    ELECTROCHIMICA ACTA, 2002, 47 (19) : 3179 - 3186
  • [2] Structure of redox intercalated (NH4)0.5V2O5•mH2O xerogel using the pair distribution function technique
    Trikalitis, PN
    Petkov, V
    Kanatzidis, MG
    CHEMISTRY OF MATERIALS, 2003, 15 (17) : 3337 - 3342
  • [3] Solid-state NMR study of ion-exchange processes in V2O5 xerogel, polyaniline/V2O5, and sulfonated polyaniline/V2O5 nanocomposites
    Holland, GP
    Yarger, JL
    Buttry, DA
    Huguenin, F
    Torresi, RM
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2003, 150 (12) : A1718 - A1722
  • [4] Structure of V2O5•nH2O xerogel solved by the atomic pair distribution function technique
    Petkov, V
    Trikalitis, PN
    Bozin, ES
    Billinge, SJL
    Vogt, T
    Kanatzidis, MG
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (34) : 10157 - 10162
  • [5] Investigation of the electrical and electrochemical properties of nanocomposites from V2O5, polypyrrole, and polyaniline
    Huguenin, Fritz
    Torresi, Roberto M.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (06): : 2202 - 2209
  • [6] Quantum anharmonic frequencies of the O•••H•••O fragment of the H5O2+ ion:: a model three-dimensional study
    Vener, MV
    Sauer, J
    CHEMICAL PHYSICS LETTERS, 1999, 312 (5-6) : 591 - 597
  • [7] UF3(H2O)(C2O4)0.5:: A fluorooxalate of tetravalent uranium with a three-dimensional framework structure
    Wang, CM
    Liao, CH
    Chen, PL
    Lii, KH
    INORGANIC CHEMISTRY, 2006, 45 (04) : 1436 - 1438
  • [8] Structure of nanocrystalline MgFe2O4 from X-ray diffraction, Rietveld and atomic pair distribution function analysis
    Gateshki, M
    Petkov, V
    Pradhan, SK
    Vogt, T
    JOURNAL OF APPLIED CRYSTALLOGRAPHY, 2005, 38 : 772 - 779
  • [9] Synthesis and structure of a three-dimensional lanthanide complex [TM2(C5H3N(COO)2)3(H2O)3)]•H2O
    Si, SF
    Li, CH
    Wang, RJ
    Li, YD
    JOURNAL OF COORDINATION CHEMISTRY, 2004, 57 (17-18) : 1545 - 1551
  • [10] Synthesis and crystal structure of a novel three-dimensional Cu(II) compound {[Cu(2,2′-bipy)(C7H4O5S)(H2O)2]•H2O}n
    Su, W
    Cao, R
    Bi, WH
    Li, X
    CHINESE JOURNAL OF STRUCTURAL CHEMISTRY, 2005, 24 (04) : 403 - 406