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Synthesis of wafer‐scale graphene with chemical vapor deposition for electronic device applications
The first isolation of graphene opens the avenue for new platforms for physics, electronic
engineering, and materials sciences. Among several kinds of synthesis approaches …
engineering, and materials sciences. Among several kinds of synthesis approaches …
High-Responsivity Gate-Tunable Ultraviolet–Visible Broadband Phototransistor Based on Graphene–WS2 Mixed-Dimensional (2D-0D) Heterostructure
Recent progress in the synthesis of highly stable, eco-friendly, cost-effective transition-metal
dichalcogenide (TMDC) quantum dots (QDs) with their broadband absorption spectra and …
dichalcogenide (TMDC) quantum dots (QDs) with their broadband absorption spectra and …
Evidence for charge transfer and proximate magnetism in graphene– heterostructures
We report a study of electronic transport in van der Waals heterostructures composed of
flakes of the antiferromagnetic Mott insulator α-RuCl 3 placed on top of monolayer graphene …
flakes of the antiferromagnetic Mott insulator α-RuCl 3 placed on top of monolayer graphene …
Straintronics of 2D inorganic materials for electronic and optical applications
IV Antonova - Uspekhi Fizicheskikh Nauk, 2022 - ufn.ru
Straintronics, being a platform for creating new-generation information processing devices
and a physical basis for the development of flexible electronics using two-dimensional (2D) …
and a physical basis for the development of flexible electronics using two-dimensional (2D) …
Picosecond energy transfer in a transition metal dichalcogenide–graphene heterostructure revealed by transient Raman spectroscopy
Intense light–matter interactions and unique structural and electrical properties make van
der Waals heterostructures composed by graphene (Gr) and monolayer transition metal …
der Waals heterostructures composed by graphene (Gr) and monolayer transition metal …
Photoluminescence patterns via single-layer exfoliation in Gr/MoS2 heterostructure using contact-mode atomic force microscopy
The stacking of two-dimensional (2D) materials presents numerous opportunities for various
nanodevice applications. Achieving atomic-thick precision in microscopic patterning is …
nanodevice applications. Achieving atomic-thick precision in microscopic patterning is …
Nonlinear Nano‐Imaging of Interlayer Coupling in 2D Graphene‐Semiconductor Heterostructures
The emergent electronic, spin, and other quantum properties of 2D heterostructures of
graphene and transition metal dichalcogenides are controlled by the underlying interlayer …
graphene and transition metal dichalcogenides are controlled by the underlying interlayer …
Structural and optical characterization of nanometer sized MoS2/graphene heterostructures for potential use in optoelectronic devices
Abstract Two-dimensional (2D) transition metal dichalcogenide (TMD) semiconductors, with
MoS 2 as the most widely researched one, have large potential for development of novel …
MoS 2 as the most widely researched one, have large potential for development of novel …
Top-gate engineering of field-effect transistors based on single layers of MoS2 and graphene
Field-effect transistors (FETs) were fabricated with use of vertical heterostructures of
graphene and MoS 2 monolayers with top-gate and back-gate configurations …
graphene and MoS 2 monolayers with top-gate and back-gate configurations …
Effect of strain on electronic properties of tri-layer MoS2/h-BN/graphene van der Waals heterostructures
The two-dimensional materials have grabbed the attention of researchers because of their
high functionality and widely controllable properties. Due to the dimensionality reduction, the …
high functionality and widely controllable properties. Due to the dimensionality reduction, the …