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Polarization-insensitive perfect absorption in van der waals hyper-structure
Infrared perfect absorption has been widely investigated due to its potential applications in
photodetectors, photovoltaics and medical diagnostics. In this report, we demonstrate that at …
photodetectors, photovoltaics and medical diagnostics. In this report, we demonstrate that at …
C3N based heterobilayers: a potential platform to explore optoelectronic and thermoelectric properties
We theoretically investigate the full thermal transport and optoelectronic features of two
established van der Waals heterostructures based on the recently synthesized monolayer of …
established van der Waals heterostructures based on the recently synthesized monolayer of …
[HTML][HTML] Electric field effects on curved graphene quantum dots
The recent and continuous research on graphene-based systems has opened their usage to
a wide range of applications due to their exotic properties. In this paper, we have studied the …
a wide range of applications due to their exotic properties. In this paper, we have studied the …
Understanding disorder in monolayer graphene devices with gate-defined superlattices
Engineering superlattices (SLs)—which are spatially periodic potential landscapes for
electrons—is an emerging approach for the realization of exotic properties, including …
electrons—is an emerging approach for the realization of exotic properties, including …
Parts-per-Trillion-Level Acetone Gas Detection Using a Suspended Graphene/SiO2 SAW Breath and Skin Gas Sensor: Simulation and Experimental Study
Detection of parts-per-trillion (ppt)-level acetone gas molecules at room temperature using
suspended graphene on SiO2 micropillars has rarely been achieved using solid-state …
suspended graphene on SiO2 micropillars has rarely been achieved using solid-state …
High-temperature Brown-Zak oscillations in graphene/hBN moiré field effect transistor fabricated using molecular beam epitaxy
Graphene placed on hexagonal boron nitride (hBN) has received significant interest due to
its excellent electrical performance and physics phenomena, such as superlattice Dirac …
its excellent electrical performance and physics phenomena, such as superlattice Dirac …
Benchmarking the integration of hexagonal boron nitride crystals and thin films into graphene-based van der Waals heterostructures
We present a benchmarking protocol that combines the characterization of boron nitride
(BN) crystals and films with the evaluation of the electronic properties of graphene on these …
(BN) crystals and films with the evaluation of the electronic properties of graphene on these …
Proximity effects, topological states, and correlated physics in graphene heterostructures
Graphene spintronics is an emerging field of research that explores the use of graphene's
extraordinary spin and charge transport properties to manipulate and control the electron …
extraordinary spin and charge transport properties to manipulate and control the electron …
Mechanical properties of freestanding few-layer graphene/boron nitride/polymer heterostacks investigated with local and non-local techniques
van der Waals two-dimensional materials and heterostructures combined with polymer films
continue to attract research attention to elucidate their functionality and potential …
continue to attract research attention to elucidate their functionality and potential …
Atomistic insights into the nucleation and growth of hexagonal boron nitride and graphene heterostructures
Graphene and hexagonal boron nitride (hBN) are two-dimensional (2D) materials with a
similar atomic structure but drastically different although complementary electronic …
similar atomic structure but drastically different although complementary electronic …