Cao Shimin, Zheng Runjie, Wang Cong, Ma Ning, Chen Mantang, Song Yuanjun, Feng Ya, Hao Tingting, Zhang Yu, Wang Yaning, Gu Pingfan, Watanabe Kenji, Taniguchi Takashi, Liu Yang, Xie X C, Ji Wei, Ye Yu, Han Zheng, Chen Jian-Hao
International Center of Quantum Materials, School of Physics, Peking University, Beijing, 100871, P. R. China.
Beijing Academy of Quantum Information Sciences, Beijing, 100193, P. R. China.
Adv Mater. 2025 Jan;37(3):e2411300. doi: 10.1002/adma.202411300. Epub 2024 Nov 28.
Anti-ferromagnetic insulator chromium oxychloride (CrOCl) has shown peculiar charge transfer and correlation-enhanced emerging properties when interfaced with other van der Waals conductive channels. However, the influence of its spin states to the channel material remains largely unknown. Here, this issue is addressed by directly measuring the density of states in bilayer graphene (BLG) interfaced with CrOCl via a high-precision capacitance measurement technique and a surprising hysteretic behavior in the charging states of the heterostructure is observed. Such hysteretic behavior depends only on the history of magnetization, but not on the history of electrical gating; it can also be turned off electrically, providing a synergetic control of these non-volatile states. First-principles calculations attribute this observation to magnetic field-controlled charge transfer between BLG and CrOCl during the phase transition of CrOCl from antiferromagnetic (AFM) to ferrimagnetic-like (FiM) states. This magnetic-electrical synergetic control mechanism broadens the scope of proximity effects and opens new possibilities for the design of advanced 2D heterostructures and devices.
反铁磁绝缘体氯氧化铬(CrOCl)与其他范德华导电通道接触时,展现出独特的电荷转移和关联增强的新兴特性。然而,其自旋态对通道材料的影响在很大程度上仍不为人知。在此,通过高精度电容测量技术直接测量与CrOCl接触的双层石墨烯(BLG)中的态密度来解决这一问题,并观察到异质结构充电状态中令人惊讶的滞后行为。这种滞后行为仅取决于磁化历史,而不取决于电门控历史;它也可以通过电方式关闭,从而对这些非易失性状态提供协同控制。第一性原理计算将这一观察结果归因于在CrOCl从反铁磁(AFM)态转变为类亚铁磁(FiM)态的过程中,BLG与CrOCl之间磁场控制的电荷转移。这种磁电协同控制机制拓宽了近邻效应的范围,并为先进二维异质结构和器件的设计开辟了新的可能性。