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首页> 外文期刊>Journal of materials science >Tailoring the activation energy and the ionic properties of bismuth codoped SDC powder prepared by solid-state reaction method
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Tailoring the activation energy and the ionic properties of bismuth codoped SDC powder prepared by solid-state reaction method

机译:通过固态反应方法剪裁活化能量和铋编码SDC粉末的离子性质

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摘要

Research on fuel cell components has received great attention owing to the growing need for sustainable energy sources. Bismuth (Bi~(3+)) codoped samarium-doped cerium oxide [Ce_(1-x)Sm_(x-y)Bi_yO_(2-δ) (x = 0.2 and y = 0, 0.05 and 0.1)] nanosystems were prepared by solid-state reaction method. Rietveld structure refinement of X-ray diffraction pattern confirms the cubic fluorite structure along the (111) plane with the decrease in lattice distortion. At the same sintering temperature, pellets exhibit good morphology with better mechanical strength. The conductivity measurements carried out using the Nyquist plot, as well as the modulus spectra, indicate the effect of grain and grain boundary conduction at high temperatures. With the increase in the incorporation of Bi dopant, there is a gradual decrease in ionic conductivity and activation energy. The composition of Ce_(0.8)Sm_(0.1)Bi_(0.1)O_(22-δ) exhibits less ionic conductivity compared to other samples due to the oxygen vacancies attracted by dopant cations. The effect of Bi~(3+) dopants on samarium-doped ceria lattice structures and the electrical properties of the systems have been discussed.
机译:由于需要对可持续能源的需求越来越多,燃料电池组件的研究得到了很大的关注。铋(Bi〜(3+))编排钐掺杂氧化铈[Ce_(1-x)Sm_(XY)Bi_yo_(2-δ)(x = 0.2和y = 0,0.05和0.1)]纳米系统固态反应法。 X射线衍射图案的RIETVELD结构改进通过晶格变形的减小来确认沿(111)平面的立方萤石结构。在相同的烧结温度下,颗粒具有更好的机械强度的良好形态。使用奈奎斯特图以及模量光谱来执行的电导率测量表明在高温下晶粒和晶界传导的效果。随着BI掺杂剂掺入的增加,离子电导率和活化能量逐渐减小。由于掺杂剂阳离子吸引的氧空位,CE_(0.8)SM_(0.1)Bi_(0.1)Bi_(0.1)Bi_(0.1)o_(0.1)O_(22-Δ)的组成表现出较少的离子电导率。已经讨论了Bi〜(3+)掺杂剂对钐掺杂的二氧化铈晶格结构的影响和系统的电性能。

著录项

  • 来源
    《Journal of materials science》 |2021年第9期|12182-12190|共9页
  • 作者单位

    Department of Physics Govt. College for Women University of Kerala Thiruvananthapuram India;

    Department of Physics Govt. College for Women University of Kerala Thiruvananthapuram India;

    Department of Physics Govt. College for Women University of Kerala Thiruvananthapuram India;

    Department of Physics Govt. College for Women University of Kerala Thiruvananthapuram India;

    Department of Electronics E.S.P.I.R.T Industries Redon France;

  • 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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