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Surface-Engineered MXenes: Electric Field Control of Magnetism and Enhanced Magnetic Anisotropy

机译:表面设计的MxENES:磁场控制和增强磁各向异性

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Controlling magnetism in two-dimensional (2D) materials via electric fields and doping enables robust long-range order by providing an external mechanism to modulate magnetic exchange interactions and anisotropy. In this report, we predict that transition metal carbide and nitride MXenes are promising candidates for controllable magnetic 2D materials. The surface terminations introduced during synthesis act as chemical dopants that influence the electronic structure, enabling controllable magnetic order. We show ground-state magnetic ordering in Janus M2XOxF2-x (M is an early transition metal, X is carbon or nitrogen, and x = 0.5, 1, or 1.5) with asymmetric surface functionalization, where local structural and chemical disorder induces magnetic ordering in some systems that are nonmagnetic or weakly magnetic in their pristine form. The resulting magnetic states of these noncentrosymmetric structures can be robustly switched and stabilized by tuning the interlayer exchange couplings with small applied electric fields. Furthermore, bond directionality is enhanced by Janus functionalization, resulting in improved magnetic anisotropy, which is essential to stable 2D magnetic ordering. The mixed termination-induced anisotropy leads to robust Ising ferromagnetism with an out-of-plane easy axis over the full range of relevant termination compositions for Janus Mn2N. Janus Cr2C, V2C, and Ti2C were found to be robustly antiferromagnetic. Our results provide a strategy for exploiting asymmetric surface functionalization to achieve room-temperature nanoscale magnetism under ambient conditions in MXenes with currently available synthesis techniques.
机译:通过电场和掺杂控制二维(2D)材料中的磁力,通过提供外部机制来调节磁交换相互作用和各向异性来实现鲁棒的远程顺序。在本报告中,我们预测过渡金属碳化物和氮化物MxEnes是可控磁性2D材料的承诺候选者。合成期间引入的表面终端作为影响电子结构的化学掺杂剂,从而实现可控的磁场。我们在Janus M2XOXF2-X中显示地态磁性排序(M是早期过渡金属,X是碳或氮气,x = 0.5,1或1.5),具有不对称的表面官能化,其中局部结构和化学障碍诱导磁性排序在某些系统中,其原始形式是非磁性或弱磁性的。通过调谐具有小施加电场的层间交换联轴器,可以鲁棒地切换和稳定这些非中心体对称结构的磁力状态。此外,Janus官能化增强了粘合方向性,导致磁各向异性改善,这对于稳定的2D磁性排序至关重要。混合终止诱导的各向异性导致稳健的是在Janus MN2N的全系列相关终止组合物上具有平面外容易轴的铁磁性。发现Janus CR2C,V2C和TI2C是强大的反铁磁性的。我们的结果提供了利用当前可用的合成技术的MXENES中的环境条件下实现室温纳米磁体的不对称表面官能化的策略。

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