Lv Haifeng, Li Xiangyang, Wu Daoxiong, Liu Ying, Li Xingxing, Wu Xiaojun, Yang Jinlong
Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, China.
CAS Key Laboratory for Materials for Energy Conversion, School of Chemistry and Materials Science, CAS Center for Excellence in Nanoscience and Synergetic Innovation of Quantum Information & Quantum Technology, University of Science and Technology of China, Hefei, Anhui 230026, China.
Nano Lett. 2022 Feb 23;22(4):1573-1579. doi: 10.1021/acs.nanolett.1c04398. Epub 2022 Feb 11.
Two-dimensional (2D) metal-organic frameworks (MOFs) with room-temperature magnetism are highly desirable but challenging due to the weak superexchange interaction between metal atoms. For this purpose, strengthening the hybridization between metal ion and organic linkage presents an experiment-feasible chemical solution to enhance the Curie temperature. Here, we report three 2D Cr(II) aromatic heterocyclic MOF magnets with enhanced Curie temperature by bridging Cr(II) ions with pyrazine, 1,4-diphosphinine, and 1,4-diarsenin linkers, i.e., Cr(pyz), Cr(diphos), and Cr(diarse), and using first-principles calculations. Our results show that Cr(pyz), Cr(diphos), and Cr(diarse) are ferrimagnetic semiconductors. In particular, the Curie temperature of Cr(pyz) is estimated to be about 344 K and could be enhanced to 512 and 437 K in Cr(diphos) and Cr(diarse) by strengthening the hybridization between Cr ions and organic linkers via d-π* direct exchange interaction. This study presents a prototype to obtain room-temperature magnetism in 2D Cr(II)-based MOF magnets for nanoscale spintronics applications.
具有室温磁性的二维(2D)金属有机框架(MOF)非常理想,但由于金属原子之间的超交换相互作用较弱,实现起来具有挑战性。为此,加强金属离子与有机连接体之间的杂化提供了一种实验可行的化学解决方案,以提高居里温度。在此,我们报告了三种二维Cr(II)芳香族杂环MOF磁体,通过用吡嗪、1,4 - 二磷杂苯和1,4 - 二砷杂苯连接体桥接Cr(II)离子,即Cr(pyz)、Cr(diphos)和Cr(diarse),并利用第一性原理计算,提高了居里温度。我们的结果表明,Cr(pyz)、Cr(diphos)和Cr(diarse)是亚铁磁性半导体。特别是,Cr(pyz)的居里温度估计约为344 K,通过d - π*直接交换相互作用加强Cr离子与有机连接体之间的杂化,在Cr(diphos)和Cr(diarse)中居里温度可提高到512 K和437 K。这项研究为在基于二维Cr(II)的MOF磁体中获得室温磁性以用于纳米级自旋电子学应用提供了一个原型。