Gao Xingyao, Li Leigang, Zhang Di, Wang Xuejing, Jian Jie, He Zihao, Wang Haiyan
School of Materials Engineering, Purdue University, West Lafayette, IN 47907, USA.
School of Electrical and Computer Engineering, Purdue University, West Lafayette, IN 47907, USA.
Nanoscale. 2020 Mar 12;12(10):5914-5921. doi: 10.1039/d0nr00083c.
Bi3MoMTO9 (BMoMTO; MT, transition metals of Mn, Fe, Co and Ni) thin films with a layered supercell structure have been deposited on LaAlO3 (001) substrates by pulsed laser deposition. Microstructural analysis suggests that pillar-like domains with higher transition metal concentration (e.g., Mn, Fe, Co and Ni) are embedded in the Mo-rich matrix with layered supercell structures. The layered supercell structure of the BMoMTO thin films accounts for the anisotropic multifunctionalities such as the magnetic easy axis along the in-plane direction, and the anisotropic optical properties. Ferroelectricity and ferromagnetism have been demonstrated in the thin films at room temperature, which confirms the multiferroic nature of the system. By varying the transition metal MT in the film, the band gaps of the BMoMTO films can be effectively tuned from 2.44 eV to 2.82 eV, while the out-of-plane dielectric constant of the thin films also varies. The newly discovered layered nanocomposite systems present their potential in ferroelectrics, multiferroics and non-linear optics.
具有层状超晶胞结构的Bi3MoMTO9(BMoMTO;MT为Mn、Fe、Co和Ni的过渡金属)薄膜已通过脉冲激光沉积法沉积在LaAlO3(001)衬底上。微观结构分析表明,具有较高过渡金属浓度(如Mn、Fe、Co和Ni)的柱状畴嵌入具有层状超晶胞结构的富Mo基体中。BMoMTO薄膜的层状超晶胞结构解释了诸如沿面内方向的磁性易轴和各向异性光学性质等各向异性多功能特性。在室温下已在薄膜中证明了铁电性和铁磁性,这证实了该体系的多铁性本质。通过改变薄膜中的过渡金属MT,BMoMTO薄膜的带隙可从2.44 eV有效调谐至2.82 eV,同时薄膜的面外介电常数也会发生变化。新发现的层状纳米复合体系在铁电体、多铁性材料和非线性光学方面展现出了潜力。