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Toward clean 2d materials and devices: Recent progress in transfer and cleaning methods
Abstract Two‐dimensional (2D) materials have tremendous potential to revolutionize the
field of electronics and photonics. Unlocking such potential, however, is hampered by the …
field of electronics and photonics. Unlocking such potential, however, is hampered by the …
Clean transfer of two-dimensional materials: A comprehensive review
The growth of two-dimensional (2D) materials through chemical vapor deposition (CVD) has
sparked a growing interest among both the industrial and academic communities. The …
sparked a growing interest among both the industrial and academic communities. The …
Programming twist angle and strain profiles in 2D materials
Moiré superlattices in twisted two-dimensional materials have generated tremendous
excitement as a platform for achieving quantum properties on demand. However, the moiré …
excitement as a platform for achieving quantum properties on demand. However, the moiré …
Strain Engineering of Twisted Bilayer Graphene: The Rise of Strain‐Twistronics
The layer‐by‐layer stacked van der Waals structures (termed vdW hetero/homostructures)
offer a new paradigm for materials design—their physical properties can be tuned by the …
offer a new paradigm for materials design—their physical properties can be tuned by the …
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 …
Manipulation of chiral interface states in a moiré quantum anomalous Hall insulator
Moiré systems made from stacked two-dimensional materials host correlated and
topological states that can be electrically controlled with applied gate voltages. One …
topological states that can be electrically controlled with applied gate voltages. One …
Ultrafast Nanoscopy of High-Density Exciton Phases in WSe2
The density-driven transition of an exciton gas into an electron–hole plasma remains a
compelling question in condensed matter physics. In two-dimensional transition metal …
compelling question in condensed matter physics. In two-dimensional transition metal …
Strain-induced quasi-1D channels in twisted moiré lattices
We study the effects of strain in moiré systems composed of honeycomb lattices. We
elucidate the formation of almost perfect one-dimensional moiré patterns in twisted bilayer …
elucidate the formation of almost perfect one-dimensional moiré patterns in twisted bilayer …
Percolation-Induced Symmetry Breaking
M Yang, CH Lee - Physical Review Letters, 2024 - APS
We propose a new avenue in which percolation, which has been much associated with
critical phase transitions, can also dictate the asymptotic dynamics of non-Hermitian systems …
critical phase transitions, can also dictate the asymptotic dynamics of non-Hermitian systems …
Designing moiré patterns by strain
Experiments conducted on two-dimensional twisted materials have revealed a plethora of
moiré patterns with different forms and shapes. The formation of these patterns is usually …
moiré patterns with different forms and shapes. The formation of these patterns is usually …