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

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Last updated 10 junho 2024
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
Nanomaterials June-1 2023 - Browse Articles
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Imperfection-enabled memristive switching in van der Waals materials
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Structures, properties, and challenges of emerging 2D materials in bioelectronics and biosensors - Chen - 2022 - InfoMat - Wiley Online Library
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Metal Sensing by DNA
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Optically modulated ionic conductivity in a hydrogel for emulating synaptic functions
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Bioartificial Synapses for Neuromorphic Computing
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
PDF) Memristive Artificial Synapses for Neuromorphic Computing
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Resistive switching in emerging materials and their characteristics for neuromorphic computing - ScienceDirect
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
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
Yuchun Zhang's research works National Center for Nanoscience and Technology, Beijing (NCNST) and other places
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Resistive switching in emerging materials and their characteristics for neuromorphic computing - ScienceDirect
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
Directional Formation of Conductive Filaments for a Reliable Organic-Based Artificial Synapse by Doping Molybdenum Disulfide Quantum Dots into a Polymer Matrix
Field-Created Coordinate Cation Bridges Enable Conductance Modulation and  Artificial Synapse within Metal Nanoparticles
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