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用于自旋电子学应用的裸露和氧端有序双过渡金属MXenes的电子和磁性性质研究。

Investigation of the electronic and magnetic properties of bare and oxygen-terminated ordered double transition-metal MXenes for spintronic applications.

作者信息

Akyildiz Aymila, Ilgaz Aysan Isil, Abdullahi Yusuf Zuntu, Akgenc Hanedar Berna, Demir Vatansever Zeynep, Ersan Fatih

机构信息

Department of Physics, Dokuz Eylul University, Izmir 35160, Turkey.

Department of Physics, Aydin Adnan Menderes University, Aydin 09010, Turkey.

出版信息

Phys Chem Chem Phys. 2024 Oct 23;26(41):26566-26575. doi: 10.1039/d4cp03396e.

DOI:10.1039/d4cp03396e
PMID:39400247
Abstract

MXenes are a large and new family of intrinsically magnetic two-dimensional (2D) transition-metal carbides and nitrides. This family has been adding new members since their first discovery in 2011, and has expanded with the exploring of ordered double transition-metal (DTM) MXenes. In this study, we have investigated the electronic and magnetic properties of thirteen bare and fourteen oxygen-terminated DTM MXene structures (MC, MCO, MM'C and MM'CO, M = Ti, Zr, Cr, and Mo; M' = Ti, V, Nb, and Ta). The Hubbard- parameter strongly depends on the atom environment and the coordination number in the cell. Therefore, for the first time in the literature, we have calculated the Hubbard- parameters for each considered MXene structure systematically instead of taking them randomly. The investigated MXene structures have striking properties with respect to their magnetic ground states, and show ferromagnetic to antiferromagnetic or non-magnetic properties, accompanied by semiconductor to metallic or semi-metallic properties, depending on the transition metal(s) or termination by oxygen. We have performed Monte Carlo simulations to obtain the magnetic phase transition temperature of each structure. Additionally, coercivity and remanence values have been calculated for ferromagnetic cases, and we have investigated the hysteresis features of the MXenes of interest by applying a cyclic magnetic field at several temperatures.

摘要

MXenes是一类新型的、具有本征磁性的二维(2D)过渡金属碳化物和氮化物大家族。自2011年首次发现以来,这个家族不断有新成员加入,并随着有序双过渡金属(DTM)MXenes的探索而不断扩展。在本研究中,我们研究了13种裸态和14种氧端基DTM MXene结构(MC、MCO、MM'C和MM'CO,其中M = Ti、Zr、Cr和Mo;M' = Ti、V、Nb和Ta)的电子和磁性性质。哈伯德参数强烈依赖于原子环境和晶胞中的配位数。因此,我们首次在文献中系统地计算了每种考虑的MXene结构的哈伯德参数,而不是随意取值。所研究的MXene结构在其磁基态方面具有显著特性,根据过渡金属或氧端基情况,呈现出从铁磁到反铁磁或非磁性的性质,同时伴随着从半导体到金属或半金属的性质。我们进行了蒙特卡罗模拟以获得每种结构的磁相变温度。此外,还计算了铁磁情况下的矫顽力和剩磁值,并通过在几个温度下施加循环磁场研究了感兴趣的MXenes的磁滞特性。

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