Latest Research in Neural Networks and Reservoir Computing
15 research papers · 2026 median publication year
Top Research Topics in Neural Networks and Reservoir Computing
- Advanced Memory and Neural Computing — 9 papers
- Neural Networks and Reservoir Computing — 2 papers
- Advanced Sensor and Energy Harvesting Materials — 1 papers
- Chemical Physics — 1 papers
- Ga2O3 and related materials — 1 papers
- Covalent Organic Framework Applications — 1 papers
Highest-Cited Papers
- Voltage-Switchable MoO3/ZnO Heterojunction Enabling Dual-Mode Optical Encryption and Brain-Inspired Vision
- A Bio‐Inspired Visual Sensor With UV‐to‐NIR Fusion for Enhanced Recognition in Autonomous Driving Systems
- Nonequilibrium Interfacial Complexation Fibers With Programmable Ionic Memory
- Lead-Free FABi3I10 Self-Rectifying Memristors for In-Memory Security and Reservoir Computing
- Ultra-sensitive 2D Dion−Jacobson perovskite phototransistors for optoelectronic neuromorphic computing
- Ultralow‐Power Optoelectronic Organic‐Inorganic Heterostructure Synapses for Monolithic Sensing‐Memory‐Computing Integrated Autonomous Driving Vision
- A Non‐Volatile Electrochromic Organic Electrochemical Transistor for Visual Neural Networks Featuring Color‐Encoded Thresholds
- Strain‐Engineered Zener Tunneling Diodes Enable Energy‐Efficient Neuromorphic Edge Vision
- Ion‐Exchange‐Driven Ternary Organic Neuromorphic Devices with High Efficiency and Stability
- Hemoglycin as a Candidate for Permanent Memory
- Dual‐Band Photodetection and Interfacial Carrier Dynamics of CuInP 2 S 6 /Ga 2 O 3 Van der Waals Heterojunction for Neuromorphic‐Like Recognition and Optical Communication
- The Interplay Between Molecular Weight and Crystal Orientation for Enhanced Ion Retention in Organic Electrochemical Synapses
- Prolonged Photocarrier Lifetime of Pt-Embedded VO2 Thin Films for Photonic Reservoir Computing
- Olefin‐Linked Ionic Covalent Organic Frameworks with Carbenium Backbones for High‐Performance Neuromorphic Computing
- Organic Ultraviolet-Selective C8-BTBT Transistors Inspired by Avian Vision