首页> 外文期刊>Journal of the American Chemical Society >Three-Dimensional Structure of Nanocomposites from Atomic Pair Distribution Function Analysis:Study of Polyaniline and (Polyaniline)_(0.5)V_2O_5 centre dot 1 .OH_2O
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Three-Dimensional Structure of Nanocomposites from Atomic Pair Distribution Function Analysis:Study of Polyaniline and (Polyaniline)_(0.5)V_2O_5 centre dot 1 .OH_2O

机译:原子对分布函数分析的纳米复合材料三维结构:聚苯胺和(聚苯胺)_(0.5)V_2O_5中心点1 .OH_2O的研究

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摘要

The three-dimensional structures of emeraldine base polyaniline (PANI) and (polyaniline)_(0.5)V_2O_5 centre dot 1.0 H_2O 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)V_2O_5 centre dot 1.0H_2O 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)V_2O_5 centre dot 1.0 H_2O on the basis of which important materials' properties can be explained predicted and possibly improved.
机译:通过全X射线散射实验确定了翡翠碱聚苯胺(PANI)和(聚苯胺)_(0.5)V_2O_5中心点1.0 H_2O的三维结构,测量了原子对分布函数(PDF)以获取对由于这些纳米结构材料的结构相干性有限,因此必须采用PDF方法。聚苯胺具有定义明确的局部原子排列,可以用84原子正交斜方晶胞来描述。 (PANI)_(0.5)V_2O_5中心点1.0H_2O也是局部有序的,可以用少量结构敏感的参数来描述.PDF方法允许构造PANI和(PANI)_( 0.5)V_2O_5中心点1.0 H_2O,据此可以解释并可能改善重要材料的性能。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第24期|p.8805-8812|共8页
  • 作者单位

    Contribution from the Department of Physics,Central Michigan University,Mt.Pleasant,Michigan 48859,Department of Chemistry,Michigan State University,East Lansing,Michigan 48824,and Department of Physics,Brookhaven National Laboratory,Upton,New York 1;

    Contribution from the Department of Physics,Central Michigan University,Mt.Pleasant,Michigan 48859,Department of Chemistry,Michigan State University,East Lansing,Michigan 48824,and Department of Physics,Brookhaven National Laboratory,Upton,New York 1;

    Contribution from the Department of Physics,Central Michigan University,Mt.Pleasant,Michigan 48859,Department of Chemistry,Michigan State University,East Lansing,Michigan 48824,and Department of Physics,Brookhaven National Laboratory,Upton,New York 1;

    Contribution from the Department of Physics,Central Michigan University,Mt.Pleasant,Michigan 48859,Department of Chemistry,Michigan State University,East Lansing,Michigan 48824,and Department of Physics,Brookhaven National Laboratory,Upton,New York 1;

    Contribution from the Department of Physics,Central Michigan University,Mt.Pleasant,Michigan 48859,Department of Chemistry,Michigan State University,East Lansing,Michigan 48824,and Department of Physics,Brookhaven National Laboratory,Upton,New York 1;

    Contribution from the Department of Physics,Central Michigan University,Mt.Pleasant,Michigan 48859,Department of Chemistry,Michigan State University,East Lansing,Michigan 48824,and Department of Physics,Brookhaven National Laboratory,Upton,New York 1;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:24:02

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