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Recent advances in 2D material theory, synthesis, properties, and applications
Two-dimensional (2D) material research is rapidly evolving to broaden the spectrum of
emergent 2D systems. Here, we review recent advances in the theory, synthesis …
emergent 2D systems. Here, we review recent advances in the theory, synthesis …
Chemical vapor deposition of 2D materials: A review of modeling, simulation, and machine learning studies
Chemical vapor deposition (CVD) is extensively used to produce large-area two-
dimensional (2D) materials. Current research is aimed at understanding mechanisms …
dimensional (2D) materials. Current research is aimed at understanding mechanisms …
Three-dimensional integration of two-dimensional field-effect transistors
In the field of semiconductors, three-dimensional (3D) integration not only enables
packaging of more devices per unit area, referred to as 'More Moore'but also introduces …
packaging of more devices per unit area, referred to as 'More Moore'but also introduces …
Active pixel sensor matrix based on monolayer MoS2 phototransistor array
In-sensor processing, which can reduce the energy and hardware burden for many machine
vision applications, is currently lacking in state-of-the-art active pixel sensor (APS) …
vision applications, is currently lacking in state-of-the-art active pixel sensor (APS) …
Benchmarking monolayer MoS2 and WS2 field-effect transistors
Here we benchmark device-to-device variation in field-effect transistors (FETs) based on
monolayer MoS2 and WS2 films grown using metal-organic chemical vapor deposition …
monolayer MoS2 and WS2 films grown using metal-organic chemical vapor deposition …
Monolithic three-dimensional integration of complementary two-dimensional field-effect transistors
The semiconductor industry is transitioning to the 'More Moore'era, driven by the adoption of
three-dimensional (3D) integration schemes surpassing the limitations of traditional two …
three-dimensional (3D) integration schemes surpassing the limitations of traditional two …
A bio-inspired visuotactile neuron for multisensory integration
Multisensory integration is a salient feature of the brain which enables better and faster
responses in comparison to unisensory integration, especially when the unisensory cues …
responses in comparison to unisensory integration, especially when the unisensory cues …
All-in-one, bio-inspired, and low-power crypto engines for near-sensor security based on two-dimensional memtransistors
In the emerging era of the internet of things (IoT), ubiquitous sensors continuously collect,
consume, store, and communicate a huge volume of information which is becoming …
consume, store, and communicate a huge volume of information which is becoming …
Wafer-Scale Epitaxial Growth of Unidirectional WS2 Monolayers on Sapphire
Realization of wafer-scale single-crystal films of transition metal dichalcogenides (TMDs)
such as WS2 requires epitaxial growth and coalescence of oriented domains to form a …
such as WS2 requires epitaxial growth and coalescence of oriented domains to form a …
A low-power biomimetic collision detector based on an in-memory molybdenum disulfide photodetector
Accurately detecting a potential collision and triggering a timely escape response is critical
in the field of robotics and autonomous vehicle safety. The lobula giant movement detector …
in the field of robotics and autonomous vehicle safety. The lobula giant movement detector …