2D heterostructures for ubiquitous electronics and optoelectronics: principles, opportunities, and challenges

PV Pham, SC Bodepudi, K Shehzad, Y Liu, Y Xu… - Chemical …, 2022 - ACS Publications
A grand family of two-dimensional (2D) materials and their heterostructures have been
discovered through the extensive experimental and theoretical efforts of chemists, material …

Ferroelectrics-integrated two-dimensional devices toward next-generation electronics

T **, J Mao, J Gao, C Han, KP Loh, ATS Wee… - ACS nano, 2022 - ACS Publications
Ferroelectric materials play an important role in a wide spectrum of semiconductor
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

S Kamaei, X Liu, A Saeidi, Y Wei, C Gastaldi… - Nature …, 2023 - nature.com
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 …

Progress of materials and devices for neuromorphic vision sensors

SW Cho, C Jo, YH Kim, SK Park - Nano-Micro Letters, 2022 - Springer
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 …

Black phosphorus/ferroelectric P (VDF-TrFE) field-effect transistors with high mobility for energy-efficient artificial synapse in high-accuracy neuromorphic computing

Z Dang, F Guo, H Duan, Q Zhao, Y Fu, W Jie, K **… - Nano …, 2023 - ACS Publications
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 …

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 …

Formation of cluster‐structured metallic filaments in organic memristors for wearable neuromorphic systems with bio‐mimetic synaptic weight distributions

U Jung, M Kim, J Jang, JH Bae, IM Kang… - Advanced …, 2024 - Wiley Online Library
With increasing demand for wearable electronics capable of computing huge data, flexible
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

S Oh, H Kim, SE Kim, MH Kim… - Advanced Intelligent …, 2023 - Wiley Online Library
Organic memristors are promising candidates for the flexible synaptic components of
wearable intelligent systems. With heightened concerns for the environment, considerable …

Ferroelectric polymers for neuromorphic computing

X Niu, B Tian, Q Zhu, B Dkhil, C Duan - Applied Physics Reviews, 2022 - pubs.aip.org
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 …

Fluoropolymer-based organic memristor with multifunctionality for flexible neural network system

MH Kim, HL Park, MH Kim, J Jang, JH Bae… - npj Flexible …, 2021 - nature.com
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 …