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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Structural, magnetic and magnetocaloric effects in epitaxial La0.67Ba0.33Ti0.02Mn0.98O3 ferromagnetic thin films grown on 001-oriented SrTiO3 substrates
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Structural, magnetic and magnetocaloric effects in epitaxial La0.67Ba0.33Ti0.02Mn0.98O3 ferromagnetic thin films grown on 001-oriented SrTiO3 substrates

机译:在001取向SrTiO3衬底上生长的外延La0.67Ba0.33Ti0.02Mn0.98O3铁磁薄膜中的结构,磁和磁热效应

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Epitaxial La0.67Ba0.33Ti0.02Mn0.98O3 (denoted as LBTMO hereafter) thin films of approximately 95 nm thickness were deposited by a pulsed laser deposition technique onto SrTiO3 (STO) (001) substrates. High-resolution X-ray diffraction (HRXRD) and transmission electron microscopy (TEM) investigations revealed that the films are epilayers with a four-fold symmetry around the [001] direction. Cross-sectional TEM and the presence of Pendellosung fringes in the XRD profiles demonstrate smooth interfaces. The STO substrate induces an in-plane compressive strain, which leads to a slight tetragonality of the film structure. The epilayers exhibit paramagnetic-to-ferromagnetic phase transitions at the Curie temperature T-C (286 K), close to room temperature. The magnetization easy axis lies in the film plane along the [100] direction of the (001) substrate. The magnetic entropy change (Delta S-M) associated with the second-order magnetic phase transition was determined via magnetization measurements in the temperature range between 210 and 350 K under different magnetic fields. The relative cooling power (RCP) of this film is about 220 J kg(-1), somewhat lower than that of bulk Gd (410 J kg(-1)) for a 50 kOe field change, making the LBTMO ferromagnetic thin films a promising candidate for microanomagnetic refrigeration around room temperature. The proposed universal curve provides a simple method for extrapolating Delta S-M in a wide range of fields and temperatures, thus confirming the order of the magnetic transition in this system. The magnetic entropy (Delta S-M)(max) around T-C is proportional to (mu H-0/T-C)(2/3) in agreement with the mean-field theory, indicating the existence of long-range ferromagnetic interactions in epitaxial LBTMO thin films.
机译:通过脉冲激光沉积技术将厚度约为95 nm的外延La0.67Ba0.33Ti0.02Mn0.98O3(以下称为LBTMO)薄膜沉积到SrTiO3(STO)(001)衬底上。高分辨率X射线衍射(HRXRD)和透射电子显微镜(TEM)研究表明,这些薄膜是围绕[001]方向具有四重对称性的外延层。横截面TEM和XRD轮廓中存在Pendellosung条纹表明界面光滑。 STO基板会引起面内压缩应变,从而导致薄膜结构略微呈四边形。外延层在居里温度T-C(286 K)接近室温时表现出顺磁性到铁磁性的相变。易磁化轴位于沿(001)基板[100]方向的薄膜平面中。通过在不同磁场下在210和350 K之间的温度范围内的磁化强度测量,确定了与二次磁相变相关的磁熵变(Delta S-M)。该膜的相对冷却功率(RCP)约为220 J kg(-1),比50 gOe场变化时的体Gd(410 J kg(-1))的相对冷却能力低,这使得LBTMO铁磁薄膜成为有望在室温下进行微/纳磁制冷。拟议的通用曲线为外推Delta S-M在广泛的磁场和温度范围内提供了一种简单的方法,从而确定了该系统中磁跃迁的顺序。 TC周围的磁熵(Delta SM)(max)与(mu H-0 / TC)(2/3)成正比,符合均场理论,表明外延LBTMO薄膜中存在长距离铁磁相互作用电影。

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