纳米技术
纳米尺度
离子键合
材料科学
纳米流体学
记忆电阻器
突触
电解质
离子
化学物理
化学
工程类
电气工程
电极
神经科学
生物
物理化学
有机化学
作者
Paul Robin,Theo Emmerich,Abdulghani Ismail,Antoine Niguès,Yi You,G. -H. Nam,Ashok Keerthi,Alessandro Siria,A. K. Geǐm,Boya Radha,Lydéric Bocquet
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-01-12
卷期号:379 (6628): 161-167
被引量:120
标识
DOI:10.1126/science.adc9931
摘要
Fine-tuned ion transport across nanoscale pores is key to many biological processes, including neurotransmission. Recent advances have enabled the confinement of water and ions to two dimensions, unveiling transport properties inaccessible at larger scales and triggering hopes of reproducing the ionic machinery of biological systems. Here we report experiments demonstrating the emergence of memory in the transport of aqueous electrolytes across (sub)nanoscale channels. We unveil two types of nanofluidic memristors depending on channel material and confinement, with memory ranging from minutes to hours. We explain how large time scales could emerge from interfacial processes such as ionic self-assembly or surface adsorption. Such behavior allowed us to implement Hebbian learning with nanofluidic systems. This result lays the foundation for biomimetic computations on aqueous electrolytic chips.
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