AbstractThe polypyrrole/titanium dioxide nano composites and polypyrrole/titanium dioxide-MWCNT nano composites were synt'/> Study of dielectric properties of polypyrrole/titanium dioxide and polypyrrole/titanium dioxide-MWCNT nano composites
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Study of dielectric properties of polypyrrole/titanium dioxide and polypyrrole/titanium dioxide-MWCNT nano composites

机译:聚吡咯/二氧化钛和聚吡咯/二氧化钛-MWCNT纳米复合材料的介电性能研究

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摘要

AbstractThe polypyrrole/titanium dioxide nano composites and polypyrrole/titanium dioxide-MWCNT nano composites were synthesized by chemical polymerization technique in the presence of an ammonium persulphate (oxidizing agent). Different concentrations viz. 15, 30, 45 and 60 wt% of titanium dioxide (TiO2) as well as mixture of TiO2-MWCNT in polypyrrole (PPy) respectively were used in the present study. The nano composites have almost spherical type shaped particles which have cluster formation as confirmed from SEM photos. The XRD graphs reveal that the PPy/TiO2(PT) nano composites have shown the semi-crystalline nature and also, the graphs indicate the changeover of the structure of PPy/TiO2-MWCNT (PTM) nano composites from amorphous to semi-crystalline nature. From the FTIR figures, shift in wavenumber towards lower side is noticed in the case of PT and PTM nano composites when compared to PPy. The dielectric properties such as dielectric constant, dielectric loss and tangent loss have shown good behavior. This reveals that, the TiO2as well as mixture of TiO2-MWCNT particles have shown strong dependence on PPy and helps to form good composites. So, the nano composites are good dielectric materials.
机译: 摘要 通过化学聚合合成聚吡咯/二氧化钛纳米复合材料和聚吡咯/二氧化钛-MWCNT纳米复合材料过硫酸铵(氧化剂)存在下的技术。不同的浓度即。目前分别使用了15、30、45和60 wt%的二氧化钛(TiO 2 )以及TiO 2 -MWCNT在聚吡咯(PPy)中的混合物研究。纳米复合材料具有几乎球形的形状的颗粒,其具有簇形成,如由SEM照片所证实的。 X射线衍射图谱表明,PPy / TiO 2 (PT)纳米复合材料具有半结晶性,并且表明PPy / TiO 2 2 的结构发生了变化。下标> -MWCNT(PTM)纳米复合材料从无定形到半结晶性质。从FTIR数据来看,与PTy相比,PT和PTM纳米复合材料的波数朝下侧移动。介电常数,介电损耗和切线损耗等介电性能表现出良好的行为。这表明,TiO 2 以及TiO 2 -MWCNT颗粒的混合物显示出对PPy的强烈依赖性,有助于形成良好的复合材料。因此,纳米复合材料是良好的介电材料。

著录项

  • 来源
    《Journal of materials science》 |2018年第4期|2848-2859|共12页
  • 作者单位

    Chalmer’s University of Technology;

    KTH Royal Institute of Technology;

    Department of Physics, Bangalore Institute of Technology;

    Department of Physics, Bangalore Institute of Technology;

    Department of Physics, Bangalore Institute of Technology;

    Department of Physics, BMS College of Engineering,Center of Excellence in Advanced Materials Research, BMS College of Engineering;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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