Zhang Deqing, Cheng Junye, Chai Jixing, Deng Jiji, Ren Ran, Su Yang, Wang Hao, Ma Chunqing, Lee Chun-Sing, Zhang Wenjun, Zheng Guang-Ping, Cao Maosheng
School of Materials Science and Engineering, Qiqihar University, Qiqihar 161006, China.
Guangdong Provincial Key Laboratory of Micro/Nano Optomechatronics Engineering, College of Mechatronics and Control Engineering, Shenzhen University, Shenzhen 518060, China.
J Alloys Compd. 2018 Apr 5;740:1067-1076. doi: 10.1016/j.jallcom.2018.01.081.
Multiferroics have broad application prospects in various fields such as multi-layer ceramic capacitors and multifunctional devices owing to their high dielectric constants and coupled magnetic and ferroelectric properties at room temperature. In this study, cobalt ferrite (CFO)/barium calcium titanate (BCT) composite fibers are prepared from BCT and CFO sols by an electrospinning method, and are then oriented by magnetic fields and sintered at high temperatures. The effects of magnetic fields and CFO contents on the nanostructures and magnetoelectric properties of the composites are investigated. Strong coupling between magnetic and ferroelectric properties occurs in CFO/BCT composites with magnetic orientation. More interestingly, the dielectric constants of CFO/BCT composites with magnetic orientation are found to be enhanced (by ∼1.5-3.5 times) as compared with those of BCT and CFO/BCT without magnetic orientation. The boost of dielectric constants of magnetic-field orientated CFO/BCT is attributed to the magneto-electrical coupling between CFO and BCT, where the polar domains of BCT are pinned by the orientated CFO. Therefore, this work not only provides a novel and effective approach in enhancing the dielectric constants of ceramic ferroelectrics, which is of tremendous value for industrial applications, but also elucidates the interaction mechanisms between ferromagnetic phase and ferroelectric phase in multiferroic compounds.
由于多铁性材料在室温下具有高介电常数以及磁电耦合特性,因此在多层陶瓷电容器和多功能器件等各个领域具有广阔的应用前景。在本研究中,通过静电纺丝法由钛酸钡钙(BCT)溶胶和钴铁氧体(CFO)溶胶制备了钴铁氧体(CFO)/钛酸钡钙(BCT)复合纤维,然后通过磁场使其取向并在高温下烧结。研究了磁场和CFO含量对复合材料纳米结构和磁电性能的影响。具有磁取向的CFO/BCT复合材料中发生了磁电特性之间的强耦合。更有趣的是,与未进行磁取向的BCT和CFO/BCT相比,具有磁取向的CFO/BCT复合材料的介电常数提高了(约1.5 - 3.5倍)。磁场取向的CFO/BCT介电常数的提高归因于CFO和BCT之间磁电耦合,其中BCT的极性畴被取向的CFO固定。因此,这项工作不仅为提高陶瓷铁电体的介电常数提供了一种新颖有效的方法,这对工业应用具有巨大价值,而且阐明了多铁性化合物中铁磁相和铁电相之间的相互作用机制。