材料科学
多铁性
纳米复合材料
铁电性
铁磁性
复合数
铁磁材料性能
复合材料
纳米技术
磁化
凝聚态物理
磁场
光电子学
电介质
物理
量子力学
作者
Chunrui Song,Wei Xu,N.A. Liedienov,I.V. Fesych,Roman Kulagin,Yan Beygelzimer,Xin Zhang,Yonghao Han,Quanjun Li,Bingbing Liu,V. P. Pashchenko,G. G. Levchenko
标识
DOI:10.1002/adfm.202113022
摘要
Abstract In this work, a novel multiferroic‐like nanocomposite is designed and obtained using the high‐pressure torsion (HPT) method. The crystal structure, phase composition, morphology, ferromagnetic (FM), and ferroelectric (FE) properties of the initial powders and ferroelectric/ferromagnetic nanocomposites are studied comprehensively. The initial powders and their composite show the perovskite and spinel crystalline phases for the FE and FM fractions, respectively. After HPT, the particle sizes of the initial powders are decreased significantly. It is shown that the novel nanocomposite consists of exchange‐interacting FE and FM phases and demonstrates improved magnetic and electrical properties in low fields at room temperature. A giant increase in residual polarization with an increase in external high‐pressure is found in new composite. The obtained results make it possible to consider the novel nanocomposite as a new functional material for its use both in electronic devices for monitoring ultra‐high‐pressure and in integrated circuits of high‐speed computing nanosystems with low switching energy. The HPT method is a promising method for obtaining new heterophase nanosystems.
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