Field-Created Coordinate Cation Bridges Enable Conductance Modulation and Artificial Synapse within Metal Nanoparticles

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Last updated 28 janeiro 2025
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
IJMS, Free Full-Text
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Switchable counterion gradients around charged metallic nanoparticles enable reception of radio waves
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Neuromorphic Liquids, Colloids, and Gels: A Review - Kheirabadi - 2023 - ChemPhysChem - Wiley Online Library
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Nanomaterials June-1 2023 - Browse Articles
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Advanced synaptic devices and their applications in biomimetic sensory neural system - ScienceDirect
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
An artificial synapse based on molecular junctions
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
IJMS, Free Full-Text
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Switchable counterion gradients around charged metallic nanoparticles enable reception of radio waves
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
IJMS, Free Full-Text
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Plasmonically engineered light-matter interactions in Au-nanoparticle/MoS2 heterostructures for artificial optoelectronic synapse
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Flexible Artificial Sensory Systems Based on Neuromorphic Devices
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Bioartificial Synapses for Neuromorphic Computing

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