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应变石墨烯及其他应变单层和多层材料的机械、电子、光学、压电和铁电性能:最新进展。

Mechanical, electronic, optical, piezoelectric and ferroic properties of strained graphene and other strained monolayers and multilayers: an update.

作者信息

Naumis Gerardo G, Herrera Saúl A, Poudel Shiva P, Nakamura Hiro, Barraza-Lopez Salvador

机构信息

Departamento de Sistemas Complejos, Instituto de Física, Universidad Nacional Autónoma de México (UNAM), Apdo. Postal 20-364, CDMX, 01000, Mexico.

Department of Physics, University of Arkansas, Fayetteville, AR 72701, United States of America.

出版信息

Rep Prog Phys. 2023 Nov 28;87(1). doi: 10.1088/1361-6633/ad06db.

Abstract

This is an update of a previous review (Naumis2017096501). Experimental and theoretical advances for straining graphene and other metallic, insulating, ferroelectric, ferroelastic, ferromagnetic and multiferroic 2D materials were considered. We surveyed (i) methods to induce valley and sublattice polarisation () in graphene, (ii) time-dependent strain and its impact on graphene's electronic properties, (iii) the role of local and global strain on superconductivity and other highly correlated and/or topological phases of graphene, (iv) inducing polarisationon hexagonal boron nitride monolayers via strain, (v) modifying the optoelectronic properties of transition metal dichalcogenide monolayers through strain, (vi) ferroic 2D materials with intrinsic elastic (), electric () and magnetic () polarisation under strain, as well as incipient 2D multiferroics and (vii) moiré bilayers exhibiting flat electronic bands and exotic quantum phase diagrams, and other bilayer or few-layer systems exhibiting ferroic orders tunable by rotations and shear strain. The update features the experimental realisations of a tunable two-dimensional Quantum Spin Hall effect in germanene, of elemental 2D ferroelectric bismuth, and 2D multiferroic NiI. The document was structured for a discussion of effects taking place in monolayers first, followed by discussions concerning bilayers and few-layers, and it represents an up-to-date overview of exciting and newest developments on the fast-paced field of 2D materials.

摘要

这是对先前一篇综述(Naumis2017096501)的更新。文中考虑了对石墨烯以及其他金属、绝缘、铁电、铁弹性、铁磁和多铁性二维材料施加应变的实验和理论进展。我们调查了:(i)在石墨烯中诱导谷极化和子晶格极化的方法;(ii)随时间变化的应变及其对石墨烯电子性质的影响;(iii)局部和全局应变对石墨烯超导性以及其他高度关联和/或拓扑相的作用;(iv)通过应变在六方氮化硼单层中诱导极化;(v)通过应变改变过渡金属二硫属化物单层的光电性质;(vi)在应变下具有固有弹性极化、电极化和磁极化的铁性二维材料,以及初始二维多铁性材料;(vii)呈现平坦电子能带和奇异量子相图的莫尔双层,以及其他通过旋转和剪切应变可调节铁性序的双层或少层系统。此次更新介绍了锗烯中可调谐二维量子自旋霍尔效应、元素二维铁电铋和二维多铁性碘化镍的实验实现。该文献的结构安排是首先讨论单层中发生的效应,随后讨论双层和少层的情况,它代表了二维材料这个快速发展领域中令人兴奋的最新进展的最新概述。

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