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郭志新

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西安交通大学材料学院教授,入选该校"青年拔尖人才计划"。博士毕业于复旦大学,先后在东京大学、德克萨斯大学奥斯汀分校开展博士后研究,2019年加入西安交通大学。课题组致力于人工智能与数值计算驱动的先进电子材料与器件设计,围绕存算一体器件与新能源器件两大方向,开展从材料预测到器件设计的全链条研究。已在 Phys. Rev. Lett.、 Nat. Commun. Adv. Matter. 等期刊发表SCI论文80余篇(一作/通讯50余篇),总引用3000余次;主持国家级项目5项,并获省杰出青年科学基金资助。欢迎对计算材料、AI for Science、存算一体与自旋电子学感兴趣的同学加入课题组!

课题组新闻

祝贺任晓雄同学在Adv. Theory Simul. 发表论文: Exotic spintronic properties of transition-metal monolayers on grap

发布时间:2022-02-25  点击次数:

发布时间:2022-02-25

文章标题:祝贺任晓雄同学在Adv. Theory Simul. 发表论文: Exotic spintronic properties of transition-metal monolayers on grap

内容:

The recent discovery of 2D magnetic materials, which are compounds of transition metals (TM) with other elements, has opened new avenues for basic research on low-dimensional magnetism and potential applications in spintronics. To further explore new 2D magnets of pure TM is an interesting topic. Based on the fifirst-principles calculations, here a strategy of obtaining monolayer TM magnets, i.e., depositing TM atoms on graphyne (Gy), which has proper hexagonal hollow geometry, is proposed. It is found that a TM monolayer with perfect hexagonal geometry can be formed on Gy. The TM monolayer exhibits a wealth of physical properties in dependence of TM species, such as ferromagnetic and anti-ferromagnetic ground states, as well as intriguing semimetal and half-metal characteristics. It is also found that the half-metal characteristics make the monolayer TM have great potential applications in horizontal magnetic tunnel junction (MTJ) devices, where the tunneling magnetoresistance can reach as high as 850 000%. These results provide a new framework for obtaining 2D magnets with outstanding spintronic properties.  see https://onlinelibrary.wiley.com/doi/full/10.1002/adts.202100287

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