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Anisotropic metal–insulator transition in strained VO_(2)(B) single crystal
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作者 马泽成 闫胜楠 +8 位作者 刘增霖 徐涛 陈繁强 陈思成 曹天俊 孙立涛 程斌 梁世军 缪峰 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第6期56-61,共6页
Mechanical strain can induce noteworthy structural and electronic changes in vanadium dioxide, imparting substantial scientific importance to both the exploration of phase transitions and the development of potential ... Mechanical strain can induce noteworthy structural and electronic changes in vanadium dioxide, imparting substantial scientific importance to both the exploration of phase transitions and the development of potential technological applications. Unlike the traditional rutile(R) phase, bronze-phase vanadium dioxide [VO_(2)(B)] exhibits an in-plane anisotropic structure. When subjected to stretching along distinct crystallographic axes, VO_(2)(B) may further manifest the axial dependence in lattice–electron interactions, which is beneficial for gaining insights into the anisotropy of electronic transport.Here, we report an anisotropic room-temperature metal–insulator transition in single-crystal VO_(2)(B) by applying in-situ uniaxial tensile strain. This material exhibits significantly different electromechanical responses along two anisotropic axes.We reveal that such an anisotropic electromechanical response mainly arises from the preferential arrangement of a straininduced unidirectional stripe state in the conductive channel. This insulating stripe state could be attributed to the in-plane dimerization within the distorted zigzag chains of vanadium atoms, evidenced by strain-modulated Raman spectra. Our work may open up a promising avenue for exploiting the anisotropy of metal–insulator transition in vanadium dioxide for potential technological applications. 展开更多
关键词 vanadium dioxide STRAIN ANISOTROPY electrical transport
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范德瓦耳斯材料的原位应变工程与应用
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作者 马泽成 刘增霖 +2 位作者 程斌 梁世军 缪峰 《物理学报》 SCIE EI CAS 2024年第11期11-23,共13页
范德瓦耳斯材料凭借独特的结构和优异的性能在应变工程领域引起了广泛的关注.通过改变原子晶格和电子结构,应变可以调控范德瓦耳斯材料的物理性质,最终实现高性能的新原理电子器件.首先总结了诱导原位应变的实验方法,然后通过回顾范德... 范德瓦耳斯材料凭借独特的结构和优异的性能在应变工程领域引起了广泛的关注.通过改变原子晶格和电子结构,应变可以调控范德瓦耳斯材料的物理性质,最终实现高性能的新原理电子器件.首先总结了诱导原位应变的实验方法,然后通过回顾范德瓦耳斯磁性、超导和拓扑材料在原位应变调控研究的最新进展,以及应变相关的器件应用开发,探讨该领域当前面临的挑战和未来的机遇. 展开更多
关键词 范德瓦耳斯材料 应变工程 原位应变 应变传感器
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