Yang Shiqi, Xu Xiaolong, Han Bo, Gu Pingfan, Guzman Roger, Song Yiwen, Lin Zhongchong, Gao Peng, Zhou Wu, Yang Jinbo, Chen Zuxin, Ye Yu
State Key Laboratory for Mesoscopic Physics and Frontiers Science Center for Nano-optoelectronics, School of Physics, Peking University, Beijing 100871, China.
School of Integrated Circuits and Electronics, MIIT Key Laboratory for Low-Dimensional Quantum Structure and Devices, Beijing Institute of Technology, Beijing 100081, China.
J Am Chem Soc. 2023 Dec 27;145(51):28184-28190. doi: 10.1021/jacs.3c10777. Epub 2023 Dec 14.
The manipulation of two-dimensional (2D) magnetic order is of significant importance to facilitate future 2D magnets for low-power and high-speed spintronic devices. van der Waals stacking engineering makes promises for controllable magnetism via interlayer magnetic coupling. However, directly examining the stacking order changes accompanying magnetic order transitions at the atomic scale and preparing device-ready 2D magnets with controllable magnetic orders remain elusive. Here, we demonstrate the effective control of interlayer stacking in exfoliated CrBr via thermally assisted strain engineering. The stable interlayer ferromagnetic (FM), antiferromagnetic (AFM), and FM-AFM coexistent ground states confirmed by the magnetic circular dichroism measurements are realized. Combined with the first-principles calculations, the atomically resolved imaging technique reveals the correlation between magnetic order and interlayer stacking order in CrBr flakes unambiguously. A tunable exchange bias effect is obtained in the mixed phase of FM and AFM states. This work will introduce new magnetic properties by controlling the stacking order and sequence of 2D magnets, providing ample opportunities for their application in spintronic devices.
二维(2D)磁序的调控对于推动未来用于低功耗和高速自旋电子器件的二维磁体至关重要。范德华堆叠工程有望通过层间磁耦合实现可控磁性。然而,在原子尺度上直接研究伴随磁序转变的堆叠顺序变化以及制备具有可控磁序的适用于器件的二维磁体仍然难以实现。在此,我们通过热辅助应变工程展示了对剥落的CrBr中层间堆叠的有效控制。通过磁圆二色性测量证实实现了稳定的层间铁磁(FM)、反铁磁(AFM)以及FM-AFM共存基态。结合第一性原理计算,原子分辨成像技术明确揭示了CrBr薄片中磁序与层间堆叠顺序之间的相关性。在FM和AFM态的混合相中获得了可调谐的交换偏置效应。这项工作将通过控制二维磁体的堆叠顺序和序列引入新的磁特性,为其在自旋电子器件中的应用提供充足机会。