Mopoung Kunpot, Ning Weihua, Zhang Muyi, Ji Fuxiang, Mukhuti Kingshuk, Engelkamp Hans, Christianen Peter C M, Singh Utkarsh, Klarbring Johan, Simak Sergei I, Abrikosov Igor A, Gao Feng, Buyanova Irina A, Chen Weimin M, Puttisong Yuttapoom
Department of Physics (IFM), Linköping University, Linköping 583 30, Sweden.
Institute of Functional Nano & Soft Materials (FUNSOM), Soochow University, Suzhou 215123, P.R. China.
J Phys Chem C Nanomater Interfaces. 2024 Mar 14;128(12):5313-5320. doi: 10.1021/acs.jpcc.3c08129. eCollection 2024 Mar 28.
Solution-processable semiconductors with antiferromagnetic (AFM) order are attractive for future spintronics and information storage technology. Halide perovskites containing magnetic ions have emerged as multifunctional materials, demonstrating a cross-link between structural, optical, electrical, and magnetic properties. However, stable optoelectronic halide perovskites that are antiferromagnetic remain sparse, and the critical design rules to optimize magnetic coupling still must be developed. Here, we combine the complementary magnetometry and electron-spin-resonance experiments, together with first-principles calculations to study the antiferromagnetic coupling in stable Cs(Ag:Na)FeCl bulk semiconductor alloys grown by the hydrothermal method. We show the importance of nonmagnetic monovalence ions at the B site (Na/Ag) in facilitating the superexchange interaction via orbital hybridization, offering the tunability of the Curie-Weiss parameters between -27 and -210 K, with a potential to promote magnetic frustration via alloying the nonmagnetic B site (Ag:Na ratio). Combining our experimental evidence with first-principles calculations, we draw a cohesive picture of the material design for B-site-ordered antiferromagnetic halide double perovskites.
具有反铁磁(AFM)序的可溶液加工半导体对未来的自旋电子学和信息存储技术具有吸引力。含磁性离子的卤化物钙钛矿已成为多功能材料,展现出结构、光学、电学和磁学性质之间的交叉联系。然而,具有反铁磁性的稳定光电卤化物钙钛矿仍然稀少,优化磁耦合的关键设计规则仍有待开发。在此,我们结合了互补的磁测量和电子自旋共振实验,以及第一性原理计算,来研究通过水热法生长的稳定Cs(Ag:Na)FeCl体半导体合金中的反铁磁耦合。我们展示了B位(Na/Ag)的非磁性单价离子在通过轨道杂化促进超交换相互作用方面的重要性,提供了居里 - 外斯参数在-27至-210 K之间的可调性,并且有可能通过合金化非磁性B位(Ag:Na比例)来促进磁阻挫。将我们的实验证据与第一性原理计算相结合,我们描绘出了B位有序反铁磁卤化物双钙钛矿材料设计的连贯图景。