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Doping of BiScO_3-PbTiO_3 Ceramics for Enhanced Properties

机译:掺杂BiScO_3-PbTiO_3陶瓷以提高性能

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摘要

Compositional modification of ferroelectric BiScO_3-PbTiO_3 (BS-PT) ceramics was investigated by Zr_(Sc)~● doping as a function of temperature and electric field. Zr doping decreased the Curie temperature; yet depoling temperature was higher as determined from the weak field measurements. Weight change measurements explain the difference in sintering behavior, emphasizing the effects of sacrificial powder on the defect structure. Possible mechanisms are discussed in collaboration with the crystal structure analysis. Pb'_(Bi) replacement was shown as a possible charge balance mechanism. Pb'_(Bi) is supported by the weight loss data, crystal structure analysis and the weak-field electrical and electromechanical measurements. However, high field measurements contradicted the postulated Pb'_(Bi) mechanism. Unipolar and bipolar high field polarization, strain and dielectric constant measurements indicated that the donor doping creates A-site vacancies; a similar observation to Pb(Zr,Ti)O_3 (PZT)-based ceramics. At higher temperatures, the property dependence on the composition decreased suggesting that thermally assisted domain motion eliminated the dependence of the domain wall mobility on the extrinsic contributions (i.e., defect structure induced by doping). Effect of Zr_(Sc)~● doping on electrical and electromechanical properties are reported and discussed as a function of temperature.
机译:通过Zr_(Sc)〜●掺杂对温度和电场的影响,研究了铁电BiScO_3-PbTiO_3(BS-PT)陶瓷的成分改性。 Zr掺杂降低了居里温度;然而,根据弱场测量结果确定的去极化温度更高。重量变化测量结果解释了烧结行为的差异,强调了牺牲粉末对缺陷结构的影响。与晶体结构分析合作讨论了可能的机制。 Pb'_(Bi)替代被证明是可能的电荷平衡机制。 Pb'_(Bi)由重量损失数据,晶体结构分析以及弱场电气和机电测量结果支持。但是,高场测量与假定的Pb'_(Bi)机制相矛盾。单极和双极高场极化,应变和介电常数的测量结果表明,施主掺杂会产生A位空位。与基于Pb(Zr,Ti)O_3(PZT)的陶瓷相似的观察结果。在较高温度下,对组成的性质依赖性降低,这表明热辅助畴运动消除了畴壁迁移率对非本征贡献(即,掺杂引起的缺陷结构)的依赖性。 Zr_(Sc)〜●掺杂对电和机电性能的影响已被报道并作为温度的函数进行了讨论。

著录项

  • 来源
    《Journal of the American Ceramic Society》 |2010年第6期|P.1718-1724|共7页
  • 作者单位

    Department of Materials Science and Engineering, Case Western Reserve University, Cleveland, Ohio 44106;

    rnNASA John Glenn Research Center, Cleveland, Ohio 44135;

    rnNASA John Glenn Research Center, Cleveland, Ohio 44135;

  • 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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  • 入库时间 2022-08-17 13:40:35

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