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Mechanical, electronic, optical, piezoelectric and ferroic properties of strained graphene and other strained monolayers and multilayers: an update
This is an update of a previous review (Naumis et al 2017 Rep. Prog. Phys. 80 096501).
Experimental and theoretical advances for straining graphene and other metallic, insulating …
Experimental and theoretical advances for straining graphene and other metallic, insulating …
Untwisting moiré physics: Almost ideal bands and fractional Chern insulators in periodically strained monolayer graphene
Moiré systems have emerged in recent years as a rich platform to study strong correlations.
Here, we will propose a simple, experimentally feasible setup based on periodically strained …
Here, we will propose a simple, experimentally feasible setup based on periodically strained …
Topological origin of flat bands as pseudo-Landau levels in uniaxial strained graphene nanoribbons and induced magnetic ordering due to electron-electron …
Flat bands play a central role in the presence of correlated phases in moiré and other
modulated two-dimensional systems. In this paper, flat bands are shown to exist in uniaxially …
modulated two-dimensional systems. In this paper, flat bands are shown to exist in uniaxially …
Electro-elastic results of graphene origami-reinforced sandwich doubly curved shells
Y Zou, S Tang, H Wang - Mechanics of Advanced Materials and …, 2024 - Taylor & Francis
Static electroelastic behavior of a doubly curved shell composed of copper core reinforced
with graphene origami auxetic metamaterial are studied in the present paper. The shell is …
with graphene origami auxetic metamaterial are studied in the present paper. The shell is …
Deterministically self-assembled 2D materials and electronics
KM Hu, W Guo, XL Deng, XY Li, EQ Tu, YH **n, ZY Xue… - Matter, 2023 - cell.com
Self-organizing mechanical instabilities provide a promising route to programmatically
micro/nanopatterning two-dimensional (2D) materials, which relies on deterministic control …
micro/nanopatterning two-dimensional (2D) materials, which relies on deterministic control …
Multiband flattening and linear Dirac band structure in graphene with impurities
Flat bands in the energy spectrum have attracted a lot of attention in recent years because of
their unique properties and promising applications. Special arrangement of impurities on …
their unique properties and promising applications. Special arrangement of impurities on …
Flat bands without twists through the use of a one harmonic Moiré systems: topological nature of modes and electron–electron pairing in periodic uniaxial strained or …
Flat bands are known to produce highly correlated phases, leading to superconductivity and
charge fractionalization. In two-dimensional systems, they have been extensively studied in …
charge fractionalization. In two-dimensional systems, they have been extensively studied in …
Flat bands and superconductivity induced by periodic strain in monolayer graphene
Superconductivity in single-layer graphene has attracted considerable interest. Here, using
the determinant quantum Monte Carlo method, we study transitions of superconductivity and …
the determinant quantum Monte Carlo method, we study transitions of superconductivity and …
Electronic transport in graphene with out-of-plane disorder
Real-world samples of graphene often exhibit various types of out-of-plane disorder–ripples,
wrinkles and folds–introduced at the stage of growth and transfer processes. These complex …
wrinkles and folds–introduced at the stage of growth and transfer processes. These complex …
Structural and electronic property engineering in graphene nanowrinkles via scanning tunneling microscopy
W Guan, K Li, Y **ao, SY Li, A Pan - Physical Review B, 2022 - APS
Graphene nanowrinkles (GNWs) are easily formed and manipulated by extrinsic
perturbation in a continuous graphene nanosheet, which provides a suitable platform to …
perturbation in a continuous graphene nanosheet, which provides a suitable platform to …