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2D heterostructures for ubiquitous electronics and optoelectronics: principles, opportunities, and challenges
A grand family of two-dimensional (2D) materials and their heterostructures have been
discovered through the extensive experimental and theoretical efforts of chemists, material …
discovered through the extensive experimental and theoretical efforts of chemists, material …
Ferroelectrics-integrated two-dimensional devices toward next-generation electronics
Ferroelectric materials play an important role in a wide spectrum of semiconductor
technologies and device applications. Two-dimensional (2D) van der Waals (vdW) …
technologies and device applications. Two-dimensional (2D) van der Waals (vdW) …
Ferroelectric gating of two-dimensional semiconductors for the integration of steep-slope logic and neuromorphic devices
The co-integration of logic switches and neuromorphic functions could be used to create
new computing architectures with low power consumption and novel functionalities. Two …
new computing architectures with low power consumption and novel functionalities. Two …
Progress of materials and devices for neuromorphic vision sensors
The latest developments in bio-inspired neuromorphic vision sensors can be summarized in
3 keywords: smaller, faster, and smarter.(1) Smaller: Devices are becoming more compact …
3 keywords: smaller, faster, and smarter.(1) Smaller: Devices are becoming more compact …
Black phosphorus/ferroelectric P (VDF-TrFE) field-effect transistors with high mobility for energy-efficient artificial synapse in high-accuracy neuromorphic computing
The neuromorphic system is an attractive platform for next-generation computing with low
power and fast speed to emulate knowledge-based learning. Here, we design ferroelectric …
power and fast speed to emulate knowledge-based learning. Here, we design ferroelectric …
Reconfigurable 2D WSe2‐Based Memtransistor for Mimicking Homosynaptic and Heterosynaptic Plasticity
G Ding, B Yang, RS Chen, WA Mo, K Zhou, Y Liu… - Small, 2021 - Wiley Online Library
The mimicking of both homosynaptic and heterosynaptic plasticity using a high‐performance
synaptic device is important for develo** human‐brain–like neuromorphic computing …
synaptic device is important for develo** human‐brain–like neuromorphic computing …
Formation of cluster‐structured metallic filaments in organic memristors for wearable neuromorphic systems with bio‐mimetic synaptic weight distributions
With increasing demand for wearable electronics capable of computing huge data, flexible
neuromorphic systems mimicking brain functions have been receiving much attention …
neuromorphic systems mimicking brain functions have been receiving much attention …
Biodegradable and flexible polymer‐based memristor possessing optimized synaptic plasticity for eco‐friendly wearable neural networks with high energy efficiency
Organic memristors are promising candidates for the flexible synaptic components of
wearable intelligent systems. With heightened concerns for the environment, considerable …
wearable intelligent systems. With heightened concerns for the environment, considerable …
Ferroelectric polymers for neuromorphic computing
The last few decades have witnessed the rapid development of electronic computers relying
on von Neumann architecture. However, due to the spatial separation of the memory unit …
on von Neumann architecture. However, due to the spatial separation of the memory unit …
Fluoropolymer-based organic memristor with multifunctionality for flexible neural network system
In this study, we propose an effective strategy for achieving the flexible one organic
transistor–one organic memristor (1T–1R) synapse using the multifunctional organic …
transistor–one organic memristor (1T–1R) synapse using the multifunctional organic …