Optoelectronic Artificial Synapses Based on Two-Dimensional Transitional-Metal Trichalcogenide

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Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
Optoelectronic Artificial Synapses Based on Two-Dimensional Transitional-Metal Trichalcogenide
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
Organic optoelectronic synapse and neuromuscular electronic system. (A)
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
Quasi-One-Dimensional van der Waals Transition Metal Trichalcogenides
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
Optoelectronic synapse using monolayer MoS2 field effect transistors
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
High-performance synaptic transistors for neuromorphic computing
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
Electronics and optoelectronics of two-dimensional transition metal dichalcogenides
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
High-performance synaptic transistors for neuromorphic computing
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
Artificial Optoelectronic Synapses Based on TiNxO2–x/MoS2 Heterojunction for Neuromorphic Computing and Visual System - Wang - 2021 - Advanced Functional Materials - Wiley Online Library
Optoelectronic Artificial Synapses Based on Two-Dimensional  Transitional-Metal Trichalcogenide
Quasi-One-Dimensional van der Waals Transition Metal Trichalcogenides
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