Synaptic Functionality and Neuromorphic Information Processing in Membrane Ion Channel Junctions

Z Zhongwu Li J Jiachen Feng (Materials Science Division Physical and Life Sciences Directorate Lawrence Livermore National Laboratory Livermore CA USA) J Jingyi Xiao A Anton Leuski (Institute for Creative Technologies University of Southern California LA USA) A Aleksandr Noy (Materials Science Division Physical and Life Sciences Directorate Lawrence Livermore National Laboratory Livermore CA USA)

Abstract

ABSTRACT The human brain performs complex memory and computational tasks with high energy efficiency by regulating ion transport through membrane channels. These signaling mechanisms have been inspiring the development of nanofluidic memristors that emulate synaptic behavior. Here, we describe a membrane ion channel synapse (MICS), constructed from aqueous droplets linked by gramicidin A channels, that achieves neuromorphic functionality. MICS exhibits memristive ion transport with hysteretic current–voltage behavior arising from voltage‐dependent channel formation and ion transport dynamics. MICS emulates a range of synaptic behaviors including associative learning. We further demonstrate its application in reservoir computing by performing handwritten digit classification and tic‐tac‐toe game and explore the system parameters that improve the computational performance. This droplet‐based biomimetic synapse offers a potentially scalable and energy‐efficient platform for next‐generation neuromorphic computing systems.

Article Details

Volume / Issue Vol. 38, Issue 31
Published June 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (5)

Z

Zhongwu Li

J

Jiachen Feng

Materials Science Division Physical and Life Sciences Directorate Lawrence Livermore National Laboratory Livermore CA USA

J

Jingyi Xiao

A

Anton Leuski

Institute for Creative Technologies University of Southern California LA USA

A

Aleksandr Noy

Materials Science Division Physical and Life Sciences Directorate Lawrence Livermore National Laboratory Livermore CA USA