首页> 外文期刊>Journal of materials science >Temperature dependent AC conductivity, mechanical and different DC conductivity modeling of poly (butyl methacrylate)/samarium doped titanium dioxide nanocomposites
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Temperature dependent AC conductivity, mechanical and different DC conductivity modeling of poly (butyl methacrylate)/samarium doped titanium dioxide nanocomposites

机译:取决于温度的交流电导率,聚甲基丙烯酸丁酯/掺mar的二氧化钛纳米复合材料的机械和不同的直流电导率模型

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摘要

This work focuses on the effect of samarium doped titanium dioxide (Sm-TiO_2) nanoparticles on the temperature dependent AC resistivity, room temperature DC conductivity and mechanical strength of poly (butyl methacrylate) (PBMA). The temperature dependent AC conductivity of the composites not only increases with the frequency, but also with the concentration of the nanoparticles. The activation energy obtained from AC conductivity decreases with increase in temperature of PBMA/Sm-TiO_2 nanocomposites. The tensile strength of the nanocoposites were much greater than pure PBMA and the mechanical strength increases with increase in concentration of Sm doped metal oxide particles whereas, the elongation at break decreases with the incorporation of filler particles. DC conductivity of the nanocomposite was also higher than pure PBMA and the conductivity increases with the addition of nanoparticles. The mechanism of DC conductivity of PBMA/Sm doped TiO_2 composite was analysed by applying different theoretical conductivity aspects based on Scarisbrick, McCullough, Bueche and Mamunya models. Among the various theoretical models, the Mamunya model exhibits better similarity with that of experimental observed conductivity.
机译:这项工作的重点是掺do的二氧化钛(Sm-TiO_2)纳米颗粒对温度相关的交流电阻率,室温直流电导率和聚甲基丙烯酸丁酯(PBMA)的机械强度的影响。复合材料随温度变化的交流电导率不仅随频率增加,而且随纳米颗粒的浓度增加。随着PBMA / Sm-TiO_2纳米复合材料温度的升高,由交流电导率获得的活化能降低。纳米复合材料的拉伸强度远大于纯PBMA,并且机械强度随掺Sm的金属氧化物颗粒浓度的增加而增加,而断裂伸长率随填料颗粒的掺入而降低。纳米复合材料的直流电导率也高于纯PBMA,并且电导率随着纳米粒子的添加而增加。基于Scarisbrick,McCullough,Bueche和Mamunya模型,通过应用不同的理论电导率方面,分析了PBMA / Sm掺杂的TiO_2复合材料的DC电导机理。在各种理论模型中,Mamunya模型表现出与实验观察到的电导率更好的相似性。

著录项

  • 来源
    《Journal of materials science》 |2017年第18期|13797-13805|共9页
  • 作者单位

    Department of Chemistry, University of Calicut, Calicut University P.O., Kerala, India;

    Department of Chemistry, University of Calicut, Calicut University P.O., Kerala, India;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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