Spontaneous magnetization induced by organic ion intercalation in the layered antiferromagnet MnPSe3
Abstract
Exploring novel two-dimensional (2D) magnetic insulators and achieving tunable magnetic properties are fundamental for their potential applications in information processing and storage. In this work, we report a modulation from antiferromagnetic (AFM) order to a state with spontaneous magnetization through the intercalation of tetrabutylammonium (TBA+) ions in the van der Waals layered antiferromagnet MnPSe3. By employing two distinct electrochemical methods, cyclic voltammetry (CV) and chronopotentiometry, we achieve different transition temperatures, spontaneous magnetizations, and in-plane anisotropies. A spontaneous magnetization of ∼0.38 μB/f.u. (∼6.5 emu/g) is observed in the CV-intercalated samples, which is a record value among the organic-ion-intercalated MPX3 (M = Mn, Fe, Ni, and X = S, Se) compounds. We attribute the spontaneous magnetization behavior to possible canted antiferromagnetism, which may be induced by the modified intralayer exchanges resulting from the TBA+ intercalation. Our results provide a feasible approach for inducing and tuning spontaneous magnetization in 2D AFM insulators.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (11)
Yahui Li
Anhui Provincial Key Laboratory of Hazardous Factors and Risk Control of Agri-food Quality and Safety
Yu Feng
Jiachen Liu
Jitang Zhou
College of Physics, Qingdao University 1 , Qingdao 266071,
Lihao Qin
College of Physics, Qingdao University 1 , Qingdao 266071,
Changping Wang
Quanxing Wei
College of Physics, Qingdao University 1 , Qingdao 266071,
Shen Yang
Zhanpeng Yin
College of Physics, Qingdao University 1 , Qingdao 266071,
Dong-Yun Chen
College of Physics, Qingdao University 1 , Qingdao 266071,
Qiang Li