尖晶石
材料科学
铁电性
陶瓷
铁磁材料性能
铁磁性
带隙
多铁性
铁电陶瓷
复合数
微观结构
调制(音乐)
相(物质)
泄漏(经济)
磁化
矿物学
光电子学
凝聚态物理
复合材料
作者
Xue Zhang,Ruijuan Qi,Shuai Yang,Hui Peng,Lin Sun,Ping‐Hua Xiang,Pingxiong Yang,Fangyu Yue,Junhao Chu
标识
DOI:10.1016/j.jallcom.2022.165624
摘要
Lead-free multiferroic composite ceramics, KNbO3-AFe2O4 (KNO-AFO, A = Mg, Zn, Ni, Co), are synthesized. The microstructure and property characterizations reveal that the introduced AFO can intrinsically modulate the optical/ferroelectric/ferromagnetic properties due to the independent existence of the two phases in the composite ceramics, including the significantly narrowing of the optical bandgap from the intrinsic ~3.2 eV of KNO down to ~1.2 eV, of which the modulation behavior is in line with the prediction of the first-principles calculations, and more importantly, the maintaining of the excellent ferromagneticity (with a remnant magnetization value of 0.8 – 36.5 emu/g) and ferroelectricity (~1 – 4 µC/cm2) but for slightly deteriorating of the leakage as compared to the anti-magnetic KNO. In addition, different spinel ferrites composited to KNO present different functions for the ferroelectric/ferromagnetic properties, i.e., the ortho-spinel phase mainly retaining the ferroelectricity of the composite ceramics while the anti-spinel phase responsible for the ferromagnetism, especially in the KNO-CFO ceramics that not only have the strongest narrowing effect of the optical bandgap but also demonstrate the most excellent magnetic properties. This makes the composite ceramics promising for a wide range of applications in ferric-based storage and photovoltaics, and should offer more options for the research of multifunctional materials and devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI