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二维有机金属 Kagome 晶格中的稳健自旋操控:一项第一性原理研究。

Robust spin manipulation in 2D organometallic Kagome lattices: a first-principles study.

作者信息

Wang Peng, Jiang Xue, Hu Jun, Wang Biao, Zhou Tingwei, Yuan Hongkuan, Zhao Jijun

机构信息

School of Physical Science and Technology, Southwest University, Chongqing 400715, China.

Key Laboratory of Materials Modification by Laser, Ion and Electron Beams (Dalian University of Technology), Ministry of Education, Dalian 116024, China.

出版信息

Phys Chem Chem Phys. 2020 May 20;22(19):11045-11052. doi: 10.1039/d0cp00742k.

DOI:10.1039/d0cp00742k
PMID:32369059
Abstract

The search for 2D ferromagnets with versatile magneto-electronic properties is becoming more active due to their potential applications in spintronic devices. To screen out the optimal compositions, we have explored a series of two-dimensional M3C12X12 (M = 5d transition metals, and X = S, NH, and O) metal-organic frameworks with Kagome lattice patterns through first-principles calculations. By varying the metal center and ligand functional radicals, both the electronic and spin-related properties can be easily tuned to meet the requirements for multifunctional applications in spintronic devices. Among them, Re3C12N12H12 is identified to be a ferromagnetic bipolar magnetic semiconductor with the highest Curie temperature (TC > 330 K). Re3C12O12 is found to be an ideal half-metal with a spin gap of 0.97 eV, which is beneficial for use as a spin-filter. Meanwhile, both Re3C12N12H12 and Re3C12O12 exhibit considerable out-of-plane magnetic anisotropy energies (>26 meV per atom), which benefit the spintronic applications. The theoretical results not only show that the 2D organometallic Kagome lattice is a good platform for designing spintronic materials, but also provides a feasible way to realize robust spin manipulation.

摘要

由于二维铁磁体在自旋电子器件中的潜在应用,对具有多功能磁电特性的二维铁磁体的研究正变得更加活跃。为了筛选出最佳成分,我们通过第一性原理计算探索了一系列具有 Kagome 晶格图案的二维 M3C12X12(M = 5d 过渡金属,X = S、NH 和 O)金属有机框架。通过改变金属中心和配体功能基团,可以轻松调节电子和自旋相关特性,以满足自旋电子器件中多功能应用的要求。其中,Re3C12N12H12 被确定为具有最高居里温度(TC > 330 K)的铁磁双极磁性半导体。发现 Re3C12O12 是一种理想的半金属,自旋能隙为 0.97 eV,有利于用作自旋过滤器。同时,Re3C12N12H12 和 Re3C12O12 都表现出相当大的面外磁各向异性能量(每个原子 >26 meV),这有利于自旋电子应用。理论结果不仅表明二维有机金属 Kagome 晶格是设计自旋电子材料的良好平台,而且为实现强大的自旋操纵提供了一种可行的方法。

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