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EuBr/石墨烯异质结中二维铁磁性和一价铕离子的预测

Prediction of 2D ferromagnetism and monovalent europium ions in EuBr/graphene heterojunctions.

作者信息

Tan Haoyi, Shan Guangcun, Pacchioni Gianfranco

机构信息

School of Instrumentation Science and Opto-electronics Engineering & Institute of Precision Instrument and Quantum Sensing, Beihang University, Beijing 100191, China.

Department of Materials Science and Engineering, City University of Hong Kong, Kowloon Tong, Hong Kong SAR.

出版信息

Phys Chem Chem Phys. 2021 Nov 24;23(45):25500-25506. doi: 10.1039/d1cp02218k.

Abstract

Europium, one of the rare-earth elements, exhibits +2 and +3 valence states and has been widely used for the magnetic modification of materials. Based on density functional theory calculations, we predicted 2D EuBr/graphene heterojunctions to exhibit metallicity, huge intrinsic-ferromagnetism nearly 7.0 per Eu and the special monovalent Eu ions. Electron localization function (ELF), difference charge densities and Bader charge analyses demonstrated that there are cation-π interactions between the EuBr films and graphene. Graphene works as a substrate to enable the stability of EuBr monolayer crystals, where EuBr plays an important role to yield ferromagnetism and enhance metallicity in the heterojunctions. Monte Carlo simulations were used to estimate a Curie temperature of about 7 K, which, together with magnetic configurations, can be further modulated by external strains and charge-carrier doping. In general, our theoretical work predicts the properties of novel 2D ferromagnetic EuBr/graphene heterojunctions, suggesting the possibility of combining 2D intrinsic-ferromagnetic metal halide crystals and graphene, and opening up a new perspective in next-generation electronic, spintronic devices and high-performance sensors.

摘要

铕作为稀土元素之一,具有 +2 和 +3 价态,已被广泛用于材料的磁性改性。基于密度泛函理论计算,我们预测二维 EuBr/石墨烯异质结具有金属性、每个 Eu 原子近 7.0 的巨大本征铁磁性以及特殊的一价 Eu 离子。电子定位函数(ELF)、差分电荷密度和巴德电荷分析表明,EuBr 薄膜与石墨烯之间存在阳离子 - π 相互作用。石墨烯作为衬底使 EuBr 单层晶体得以稳定,其中 EuBr 在异质结中产生铁磁性和增强金属性方面发挥着重要作用。蒙特卡罗模拟用于估计约 7 K 的居里温度,该温度与磁构型一起可通过外部应变和电荷载流子掺杂进一步调制。总的来说,我们的理论工作预测了新型二维铁磁 EuBr/石墨烯异质结的性质,表明了将二维本征铁磁金属卤化物晶体与石墨烯相结合的可能性,并为下一代电子、自旋电子器件和高性能传感器开辟了新的视角。

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