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Multilevel memory and artificial synaptic plasticity in P (VDF-TrFE)-based ferroelectric field effect transistors
Y Sun, N He, Y Wang, Q Yuan, D Wen - Nano Energy, 2022 - Elsevier
Multilevel data memory and artificial synaptic plasticity in poly (vinylidene fluoride-co-
trifluoroethylene)[P (VDF-TrFE)] ferroelectric field effect transistors were demonstrated. The …
trifluoroethylene)[P (VDF-TrFE)] ferroelectric field effect transistors were demonstrated. The …
Deep-trap dominated degradation of the endurance characteristics in OFET memory with polymer charge-trap** layer
T Yu, Z Liu, Y Wang, L Zhang, S Hou, Z Wan, J Yin… - Scientific Reports, 2023 - nature.com
Organic field-effect transistors (OFETs) with polymer charge-trap** dielectric, which exhibit
many advantages over Si-based memory devices such as low cost, light weight, and …
many advantages over Si-based memory devices such as low cost, light weight, and …
High‐Performance Pentacene‐Based Field‐Effect Transistor Memory Using the Electrets of Polymer Blends
Z Liu, T Yu, Z Wan, Y Wang, Z Li, J Yin… - Advanced Electronic …, 2022 - Wiley Online Library
Organic field‐effect transistor (OFET) memory based on pentacene has attracted a lot of
attentions due to its promising prospect of application in flexible electronics, while the high …
attentions due to its promising prospect of application in flexible electronics, while the high …
A flexible floating-gate based organic field-effect transistor non-volatile memory based on F8BT/PMMA integrated floating-gate/tunneling layer
S Shu, T Xu, J Su - Physica Scripta, 2023 - iopscience.iop.org
The solution mixing method was adopted to build polymer semiconductor poly (9, 9-
dioctylflfluorene-co-benzothiadiazole)(F8BT) nanoparticles (NPs), which were mixed with …
dioctylflfluorene-co-benzothiadiazole)(F8BT) nanoparticles (NPs), which were mixed with …
Arylacetylene End-Capped Triarylamine-Based D–A System for Switching from Binary to Ternary Memory Behavior
Introducing a different acceptor into the same molecular backbone with a definite acceptor
strength is the key to develo** multilevel memory devices. A series of Y-shaped imidazole …
strength is the key to develo** multilevel memory devices. A series of Y-shaped imidazole …
A carbonyl-decorated two-dimensional polymer as a charge-trap** layer for non-volatile memory storage devices with a high endurance and wide memory window
The charge-trap** mechanism in conjugated polymers is a performance obstacle in many
optoelectronic devices harnessed for non-volatile memory applications. Herein, a carbonyl …
optoelectronic devices harnessed for non-volatile memory applications. Herein, a carbonyl …
Enhanced Performance of Organic Field‐Effect Transistor with Bi‐Functional N‐Type Organic Semiconductor Layer
T Yu, S Hou, Z Liu, Y Wang, J Yin, X Gao… - Advanced Electronic …, 2024 - Wiley Online Library
Organic field‐effect transistors (OFETs) hold great promise for applications in non‐volatile
memories, detectors, and artificial synapses due to the good flexibility and biocompatibility …
memories, detectors, and artificial synapses due to the good flexibility and biocompatibility …
Graphene oxide-based bioinspired neuromorphic transistors with artificial synaptic plasticity
X Meng, G Qin, Y Sun - Materials Science in Semiconductor Processing, 2025 - Elsevier
The explosive growth of information and the emergence of artificial intelligence have
sparked significant interest in brain-like computing devices due to their unique properties in …
sparked significant interest in brain-like computing devices due to their unique properties in …
Nanographene‐Based Heterojunctions for High‐Performance Organic Phototransistor Memory Devices
Organic phototransistors can enable many important applications such as nonvolatile
memory, artificial synapses, and photodetectors in next‐generation optical communication …
memory, artificial synapses, and photodetectors in next‐generation optical communication …
Disordered Phase-Assisted Growth of Organic Semiconductor Crystals on Self-Assembled Monolayer Templates
Achieving high mobility and bias stability is a challenging obstacle in the advancement of
organic thin-film transistors (OTFTs). To this end, the fabrication of high-quality organic …
organic thin-film transistors (OTFTs). To this end, the fabrication of high-quality organic …