Bio‐inspired Two‐dimensional Nanofluidic Ionic Transistor for Neuromorphic Signal Processing

T Mei, W Liu, F Sun, Y Chen, G Xu… - Angewandte Chemie …, 2024 - Wiley Online Library
Voltage‐gated ion channels prevalent in neurons play important roles in generating action
potential and information transmission by responding to transmembrane potential …

[PDF][PDF] Angewandte

T Mei, W Liu, F Sun, Y Chen, G Xu, Z Huang, Y Jiang… - researchgate.net
Voltage-gated ion channels prevalent in neurons play important roles in generating action
potential and information transmission by responding to transmembrane potential …

Bio‐inspired Two‐dimensional Nanofluidic Ionic Transistor for Neuromorphic Signal Processing

T Mei, W Liu, F Sun, Y Chen, G Xu, Z Huang… - Angewandte …, 2024 - Wiley Online Library
Voltage‐gated ion channels prevalent in neurons play important roles in generating action
potential and information transmission by responding to transmembrane potential …

Bio-inspired Two-dimensional Nanofluidic Ionic Transistor for Neuromorphic Signal Processing.

T Mei, W Liu, F Sun, Y Chen, G Xu, Z Huang… - … (International ed. in …, 2024 - europepmc.org
Voltage-gated ion channels prevalent in neurons play important roles in generating action
potential and information transmission by responding to transmembrane potential …

Bio‑inspired Two‑dimensional Nanofluidic Ionic Transistor for Neuromorphic Signal Processing

T Mei, W Liu, F Sun, Y Chen, G Xu… - Angewandte …, 2024 - ui.adsabs.harvard.edu
Voltage‑gated ion channels prevalent in neurons play important roles in generating action
potential and information transmission by responding to transmembrane potential …

Bio-inspired Two-dimensional Nanofluidic Ionic Transistor for Neuromorphic Signal Processing

T Mei, W Liu, F Sun, Y Chen, G Xu… - … (International ed. in …, 2024 - pubmed.ncbi.nlm.nih.gov
Voltage-gated ion channels prevalent in neurons play important roles in generating action
potential and information transmission by responding to transmembrane potential …