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Mechanical-Induced Polarization Switching in Relaxor Ferroelectric Single Crystals

机译:SALLENS诱导的偏振切换在弛豫铁电单晶

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摘要

Control of coupling between electric and elastic orders in ferroelectric bulks is vital to understand their nature and enrich the multifunctionality of polarization manipulation applied in domain-based electronic devices such as ferroelectric memories and data storage ones. Herein, taking (1 – x %)Pb(Mg_(1/3)Nb_(2/3))O_(3)–x %PbTiO_(3) (PMN–x %PT, x = 32, 40) as the prototype, we demonstrate the less-explored mechanical switching in relaxor ferroelectric single crystals using scanning probe microscopy. Low mechanical forces can induce metastable and electrically erasable polarization reversal clearly from electrical-created bipolar domains around the 180° domain wall in monoclinic PMN–32%PT and inside the c+ domain in tetragonal PMN–40%PT. The mechanical switching evolutions show force/time dependence and time-force equivalence. The time-dependent mechanical switching behavior stems from the participation and contribution of polar nanoregions. Flexoelectricity and bulk Vegard strain effect can account for the mechanical switching but notably, the former in the two has very different origins. These investigations exhibit the possibility of mechanical switching as a tool to manipulate polarization states in ferroelectric bulks, and provide the potential of these crystals as substrates in mechanical polarization control of future thin-film devices.
机译:在铁电块中的电力和弹性顺序之间的控制对于了解其性质,并丰富应用于基于域的电子设备的偏振操作的多功能性,例如铁电存储器和数据存储。在此,服用(1 - x x%)pb(mg_(1/3)nb_(2/3))O_(3) - x%pbtio_(3)(pmn- x%pt , x = 32,40)作为原型,我们展示了使用扫描探针显微镜的松弛剂铁电单晶的较少探索的机械开关。低机械力可以从180°域壁周围的电气产生的双极结构域内诱导亚稳态和电可擦除的偏振反转,在单斜斜液PMN-32%PT和四方PMN-40%PT中的C +结构域内。机械切换演进示出了力/时间依赖性和时间力等效。时间依赖性机械开关行为源于极性纳米导致的参与和贡献。柔性电和散装vegard应变效应可以解释机械开关,但值得注意的是,前者在两者中具有截然不同的起源。这些研究表现出机械切换作为操纵铁电块中的偏振态的工具的可能性,并且在未来薄膜装置的机械偏振控制中提供这些晶体的电位。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2019年第43期|共11页
  • 作者单位

    Frontier Institute of Science and Technology State Key Laboratory for Mechanical Behavior of Materials Xi’an Jiaotong University;

    Frontier Institute of Science and Technology State Key Laboratory for Mechanical Behavior of Materials Xi’an Jiaotong University;

    Oxford Instruments;

    Frontier Institute of Science and Technology State Key Laboratory for Mechanical Behavior of Materials Xi’an Jiaotong University;

    Frontier Institute of Science and Technology State Key Laboratory for Mechanical Behavior of Materials Xi’an Jiaotong University;

    Frontier Institute of Science and Technology State Key Laboratory for Mechanical Behavior of Materials Xi’an Jiaotong University;

    School of Materials Science and Engineering University of New South Wales;

    Frontier Institute of Science and Technology State Key Laboratory for Mechanical Behavior of Materials Xi’an Jiaotong University;

    Center for Spintronics and Quantum Systems State Key Laboratory for Mechanical Behavior of Materials Department of Materials Science and Engineering Xi’an Jiaotong University;

    Department of Materials Science and Engineering Virginia Tech;

    Frontier Institute of Science and Technology State Key Laboratory for Mechanical Behavior of Materials Xi’an Jiaotong University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    mechanical switching; relaxor ferroelectrics; single crystal; flexoelectricity; scanning probe microscopy;

    机译:机械切换;松弛率铁电;单晶;柔性电;扫描探针显微镜;

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