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Van der Waals Ferroelectric Engineering as a Universal Strategy for Nonvolatile Magnetic Switching in Nonmagnetic Two-Dimensional VSiN_(3)
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作者 Shili Yang Chun-Sheng Liu +5 位作者 Shaohui Yu Peng Jiang Hua Hao Lei Zhang Yushen Liu Xiaohong Zheng 《Chinese Physics Letters》 2025年第9期169-182,共14页
The presence of a van Hove singularity(vHS)at the Fermi level can trigger magnetic instability by mediating a spontaneous transition from paramagnetic to magnetically ordered states.While electrostatic doping(typicall... The presence of a van Hove singularity(vHS)at the Fermi level can trigger magnetic instability by mediating a spontaneous transition from paramagnetic to magnetically ordered states.While electrostatic doping(typically achieved via ionic gating)to shift the vHS to the Fermi level provides a general mechanism for engineering such magnetism,its volatile nature often leads to the collapse of induced states upon gate field removal.Here,a novel scheme is presented for non-volatile magnetic control by utilizing ferroelectric heterostructures to achieve reversible magnetism switching.Using two-dimensional VSiN_(3),a nonmagnetic material with Mexican-hat electronic band dispersions hosting vHSs,as a prototype,it is preliminarily demonstrated that both electron and hole doping can robustly induce magnetism.Further,by interfacing VSiN_(3)with ferroelectric Sc_(2)CO_(2),reversible switching of its magnetic state via polarization-driven heterointerfacial charge transfer is achieved.This mechanism enables a dynamic transition between insulating and half-metallic phases in VSiN_(3),establishing a pathway to design multiferroic tunnel junctions with giant tunneling electroresistance or magnetoresistance.This work bridges non-volatile ferroelectric control with vHS-enhanced magnetism,opening opportunities for energy-efficient and high-performance spintronic devices and non-volatile memory devices. 展开更多
关键词 van hove singularity vhs van der waals ferroelectric engineering nonvolatile magnetic switching ionic gating electrostatic doping typically trigger magnetic instability nonmagnetic two dimensional vsin collapse induced states
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Si含量对VSiN涂层的结构、力学性能和摩擦磨损性能影响
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作者 米鹏博 赵洪舰 叶福兴 《真空科学与技术学报》 EI CAS CSCD 北大核心 2016年第10期1107-1111,共5页
采用JGP-450A2磁控溅射仪制备了一系列不同Si含量(≤20%(原子比))的VSi N涂层。利用结构和性能测试仪器对VSi N涂层的微结构、力学性能和摩擦磨损性能进行了表征。结果表明:VSi N涂层的相组成为面心立方的VN相、V2N相和非晶氮化硅相,呈(... 采用JGP-450A2磁控溅射仪制备了一系列不同Si含量(≤20%(原子比))的VSi N涂层。利用结构和性能测试仪器对VSi N涂层的微结构、力学性能和摩擦磨损性能进行了表征。结果表明:VSi N涂层的相组成为面心立方的VN相、V2N相和非晶氮化硅相,呈(111)择优生长。随着溅射后Si含量增加,VSi N涂层的硬度先升高后降低,含有10.2%Si含量的涂层硬度最大,约为27 GPa。室温环境摩擦时,随着溅射后Si含量增加,摩擦系数和磨损率均呈现先减小后增大趋势。摩擦系数和磨损率最小值均在硬度最大处获得,分别为0.35和5.2×10^(-6)mm^3/N·mm。 展开更多
关键词 磁控溅射 vsin涂层 微结构 力学性能 摩擦性能
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低合金高速钢W4Mo3Cr4VSiN的应用 被引量:1
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作者 栾学义 祝国华 《机械工人(热加工)》 1990年第9期47-51,共5页
工具厂生产高速切削工具,多采用高合金W18Cr4V和W6Mo5Cr4V2高速钢,这些钢种所含合金元素较多,价格昂贵。因此,如何合理有效地利用合金化原理,研究和使用“低合金高速钢”,以适应我国资源特点,成为当前热处理工作者一项重要的研究课题。
关键词 低合金高速钢 高速钢 W4Mo3Cr4vsin
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