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Tunable Magnetism and Transport Properties in Nitride MXenes

机译:氮化物Mxenes中的可调谐磁性和运输性质

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摘要

Two-dimensional materials with intrinsic and robust ferromagnetism and half-metallicity are of great interest to explore the exciting physics and applications of nanoscale spintronic devices, but no such materials have been experimentally realized. In this study, we predict several M2NTx nitride MXene structures that display these characteristics based on a comprehensive study using a crystal field theory model and first-principles simulations. We demonstrate intrinsic ferromagnetism in Mn2Tx with different surface terminations (T = O, OH, and F), as well as in Ti2NO2 and Cr2NO2. High magnetic moments (up to 9 mu(B) per unit cell), high Curie temperatures (1877 to 566 K), robust ferromagnetism, and intrinsic half-metallic transport behavior of these MXenes suggest that they are promising candidates for spintronic applications, which should stimulate interest in their synthesis.
机译:具有内在和强大的铁磁性和半金属性的二维材料非常令人兴趣,探索南方级旋转式装置的令人兴奋的物理和应用,但没有这样的材料已经实验地实现了这种材料。 在这项研究中,我们预测了几种M2NTX氮化物MXENE结构,其基于使用晶体场理论模型和第一原理模拟的综合研究显示这些特性。 我们在MN2TX中证明了具有不同表面终端(T = O,OH和F)的内在铁磁性,以及Ti2NO2和Cr2NO2。 高磁矩(每单位细胞最多9亩(B)),高居里温度(1877至566 k),鲁棒铁磁性和这些mxenes的内在金属传输行为表明它们是用于旋转式应用的候选者, 应该刺激他们的合成兴趣。

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