神经形态工程学
记忆电阻器
整改
离子键合
材料科学
电解质
门控
磁滞
电导
纳米技术
电压
电子线路
生物电子学
二极管
化学物理
光电子学
电极
化学
凝聚态物理
离子
电子工程
物理
计算机科学
生物传感器
人工神经网络
工程类
物理化学
生理学
机器学习
生物
有机化学
量子力学
作者
Patricio Ramı́rez,Sergio Portillo,Javier Cervera,Saima Nasir,Mubarak Ali,Wolfgang Ensinger,Salvador Mafé
摘要
We show that ionic conduction properties of a multipore nanofluidic memristor can be controlled not only by the amplitude and frequency of an external driving signal but also by chemical gating based on the electrolyte concentration, presence of divalent and trivalent cations, and multi-ionic systems in single and mixed electrolytes. In addition, we describe the modulation of current rectification and hysteresis phenomena, together with neuromorphic conductance responses to voltage pulses, in symmetric and asymmetric external solutions. In our case, memristor conical pores act as nanofluidic diodes modulated by ionic solution characteristics due to the surface charge-regulated ionic transport. The above facts suggest potential sensing and actuating applications based on the conversion between ionic and electronic signals in bioelectrochemical hybrid circuits.
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