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Fermi level pinning dependent 2D semiconductor devices: challenges and prospects
Motivated by the high expectation for efficient electrostatic modulation of charge transport at
very low voltages, atomically thin 2D materials with a range of bandgaps are investigated …
very low voltages, atomically thin 2D materials with a range of bandgaps are investigated …
Materials science challenges to graphene nanoribbon electronics
Graphene nanoribbons (GNRs) have recently emerged as promising candidates for channel
materials in future nanoelectronic devices due to their exceptional electronic, thermal, and …
materials in future nanoelectronic devices due to their exceptional electronic, thermal, and …
Highly reproducible van der Waals integration of two-dimensional electronics on the wafer scale
Abstract Two-dimensional (2D) semiconductors such as molybdenum disulfide (MoS2) have
attracted tremendous interest for transistor applications. However, the fabrication of 2D …
attracted tremendous interest for transistor applications. However, the fabrication of 2D …
Engineering van der Waals materials for advanced metaphotonics
The outstanding chemical and physical properties of 2D materials, together with their
atomically thin nature, make them ideal candidates for metaphotonic device integration and …
atomically thin nature, make them ideal candidates for metaphotonic device integration and …
Two-dimensional diamonds from sp2-to-sp3 phase transitions
The ability to change material properties through phase engineering has long been sought,
with the goal of ad hoc tunability of the physical and chemical properties of the transformed …
with the goal of ad hoc tunability of the physical and chemical properties of the transformed …
Ohmic contact engineering for two-dimensional materials
One of the major areas of semiconductor device research is the development of transparent
or ohmic contacts between semiconductors and metal electrodes for the efficient injection of …
or ohmic contacts between semiconductors and metal electrodes for the efficient injection of …
Achieving reliable and ultrafast memristors via artificial filaments in silk fibroin
The practical implementation of memristors in neuromorphic computing and biomimetic
sensing suffers from unexpected temporal and spatial variations due to the stochastic …
sensing suffers from unexpected temporal and spatial variations due to the stochastic …
Recent advances in 2D/nanostructured metal sulfide-based gas sensors: mechanisms, applications, and perspectives
2D and nanostructured metal sulfide materials are promising in the advancement of several
gas sensing applications due to the abundant choice of materials with easily tunable …
gas sensing applications due to the abundant choice of materials with easily tunable …
High-speed femtosecond laser plasmonic lithography and reduction of graphene oxide for anisotropic photoresponse
Micro/nanoprocessing of graphene surfaces has attracted significant interest for both
science and applications due to its effective modulation of material properties, which …
science and applications due to its effective modulation of material properties, which …
Layer-by-layer epitaxy of multi-layer MoS2 wafers
The 2D semiconductor of MoS2 has great potential for advanced electronics technologies
beyond silicon. So far, high-quality monolayer MoS2 wafers have been available and …
beyond silicon. So far, high-quality monolayer MoS2 wafers have been available and …