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首页> 外文期刊>Journal of materials science >Influence of lithium disilicate addition on the dielectric properties of chemically synthesized CaCu_3Ti_4O_(12)
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Influence of lithium disilicate addition on the dielectric properties of chemically synthesized CaCu_3Ti_4O_(12)

机译:二硅酸锂的添加对化学合成的CaCu_3Ti_4O_(12)介电性能的影响

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摘要

The effects of the method of synthesis along with the introduction of a sintering aid on the electric and dielectric properties of CaCu_3Ti_4O_(12) were investigated in detail. The mixed oxide with perovskite structure was synthesized by the coprecipitation method. Polycrystalline specimens were prepared by adding 0.5 mol% Li_2Si_2O_5 to the mixed oxide followed by sintering in the 1000-1100 ℃ range for 12 h. A high density value was obtained for sintering at a temperature as low as 1000 ℃. Average grain sizes of sintered specimens are of the same order of magnitude as those of specimens prepared by the same method without the additive. The activation energy values for electric conduction were found to be 0.1 eV (grain) and varying from 0.4 to 0.6 eV (grain boundary). The dielectric properties are similar to those of specimens without the additive. The overall results evidence the possibility of reduction of the sintering temperature by about 100 ℃ with the introduction of a small amount of lithium disilicate while keeping the dielectric properties of pure CaCu_3Ti_4O_(12).
机译:详细研究了合成方法以及烧结助剂的引入对CaCu_3Ti_4O_(12)的电和介电性能的影响。通过共沉淀法合成了钙钛矿结构的混合氧化物。通过向混合氧化物中添加0.5 mol%Li_2Si_2O_5,然后在1000-1100℃范围内烧结12 h,来制备多晶试样。在低至1000℃的温度下获得较高的烧结密度值。烧结试样的平均晶粒大小与通过相同方法制备的不含添加剂的试样的晶粒大小相同。发现用于电导的活化能值为0.1eV(晶粒)并且在0.4至0.6eV(晶粒边界)之间变化。介电性能类似于不含添加剂的样品。总体结果表明,通过引入少量的二硅酸锂,同时保持纯CaCu_3Ti_4O_(12)的介电性能,可以将烧结温度降低约100℃。

著录项

  • 来源
    《Journal of materials science》 |2015年第6期|3970-3975|共6页
  • 作者单位

    Energy and Nuclear Research Institute - IPEN, PO Box 11049, Sao Paulo, SP 05422-970, Brazil;

    Energy and Nuclear Research Institute - IPEN, PO Box 11049, Sao Paulo, SP 05422-970, Brazil;

  • 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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