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Local polar structure and multiferroic properties of (1−x)Bi0.9Dy0.1FeO3−xPbTiO3 solid solution

机译:(1-x)Bi 0.9 Dy 0.1 FeO 3 -xPbTiO 3 固体的局部极性结构和多铁性解

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摘要

The multiferroic (1–x)[0.9BiFeO3–0.1DyFeO3]–xPbTiO3 (BDF–xPT) solid solution with compositions around the morphotropic phase boundary (x = 0.25, 0.28, 0.31, 0.34, and 0.37) has been synthesized in the form of ceramics. The phase symmetry, microstructure, ferroelectricity, piezoresponse, and ferromagnetic properties have been characterized by various techniques. It is found that, with increasing content of lead titanate from x = 0.25 to x = 0.37, the grain size increases and the ferroelectric property is improved. The ferroelectric performance is further enhanced by the introduction of an excess amount (2%) of TiO2 or by sintering in oxygen atmosphere, which reduces the leakage. The local polar structure is imaged by piezoresponse force microscopy. Both the out-of-plane and in-plane images reveal distinct ferroelectric domain structures, with the amplitude and the average domain size decreasing with the increase of lead titanate amount. Compared with the (1–x)BiFeO3–xPbTiO3 binary solid solution of about the same concentration of PT, the magnetic properties are enhanced in BDF–xPT due to the presence of dysprosium, as demonstrated by the ferromagnetic hysteresis loops displayed at room temperature and at 10 K, but the remnant magnetization decreases with increasing PT content. The simultaneous presence of ferroelectricity and ferromagnetism entitles the BDF–xPT solid solution a room-temperature multiferroic material.
机译:多铁(1–x)[0.9BiFeO 3 –0.1DyFeO 3 ] – xPbTiO 3 (BDF–xPT)固溶体,其组成约为以陶瓷的形式合成了相变相界(x = 0.25、0.28、0.31、0.34和0.37)。已经通过各种技术表征了相对称性,微观结构,铁电性,压电响应和铁磁特性。发现,随着钛酸铅的含量从x == 0.25增加到x == 0.37,晶粒尺寸增加并且铁电性能得到改善。通过引入过量(2%)的TiO 2 或在氧气气氛中烧结,可进一步提高铁电性能,从而减少了泄漏。局部极性结构通过压电响应力显微镜成像。平面外和平面内图像均显示出不同的铁电畴结构,其幅度和平均畴尺寸随钛酸铅量的增加而减小。与大约相同PT浓度的(1–x)BiFeO 3 –xPbTiO 3 二元固溶体相比,BDF–xPT的磁性提高了room存在,如在室温和10 displayedK下显示的铁磁磁滞回线所示,但是剩余的磁化强度随PT含量的增加而降低。铁电和铁磁性的同时存在使BDF-xPT固溶体成为室温的多铁材料。

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  • 来源
    《Journal of Applied Physics》 |2014年第6期|1-7|共7页
  • 作者单位

    Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education & International Center for Dielectric Research, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China;

  • 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);
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  • 正文语种 eng
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