材料科学
磁性
钒
铁磁性
凝聚态物理
磁性半导体
单层
密度泛函理论
自旋电子学
磁电阻
磁力显微镜
纳米技术
磁化
磁场
计算化学
化学
物理
冶金
量子力学
作者
Seok Joon Yun,Byeong Wook Cho,Dinesh Thapa,Dae Hee Yang,Yong In Kim,Jeong Won Jin,Sang‐Hyeok Yang,Tuan Dung Nguyen,Young‐Min Kim,Ki Kang Kim,Dinh Loc Duong⧫,Seong‐Gon Kim,Young Hee Lee
标识
DOI:10.1002/adma.202106551
摘要
Magnetic order has been proposed to arise from a variety of defects, including vacancies, antisites, and grain boundaries, which are relevant in numerous electronics and spintronics applications. Nevertheless, its magnetism remains controversial due to the lack of structural analysis. The escalation of ferromagnetism in vanadium-doped WSe2 monolayer is herein demonstrated by tailoring complex configurations of Se vacancies (SeVac ) via post heat-treatment. Structural analysis of atomic defects is systematically performed using transmission electron microscopy (TEM), enabled by the monolayer nature. Temperature-dependent magnetoresistance hysteresis ensures enhanced magnetic order after high-temperature heat-treatment, consistent with magnetic domain analysis from magnetic force microscopy (MFM). The vanadium-Se vacancy pairing is a key to promoting ferromagnetism via spin-flip by electron transfer, predicted from density-functional-theory (DFT) calculations. The approach toward nanodefect engineering paves a way to overcome weak magnetic order in diluted magnetic semiconductors (DMSs) for renovating semiconductor spintronics.
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