Electrochemical Analysis of Ion Effects on Electrolyte-Gated Synaptic Transistor Characteristics

  • Lee, Haeyeon; 
  • Cho, Jinil; 
  • Jin, Minho; 
  • Lee, Jae Hak; 
  • Lee, Chan; 
  • ... Yoo, Jeeyoung; 
  • 외 5명
Citations

WEB OF SCIENCE

47
Citations

SCOPUS

29

초록

Electrolyte-gated transistors (EGTs) are promising candidates as artificial synapses owing to their precise conductance controllability, quick response times, and especially their low operating voltages resulting from ion-assisted signal transmission. However, it is still vague how ion-related physiochemical elements and working mechanisms impact synaptic performance. Here, to address the unclear correlations, we suggest a methodical approach based on electrochemical analysis using poly-(ethylene oxide) EGTs with three alkali ions: Li+, Na+, and K+. Cyclic voltammetry is employed to identify the kind of electrochemical reactions taking place at the channel/electrolyte interface, which determines the nonvolatile memory functionality of the EGTs. Additionally, using electrochemical impedance spectroscopy and qualitative analysis of electrolytes, we confirm that the intrinsic properties of electrolytes (such as crystallinity, solubility, and ion conductivity) and ion dynamics ultimately define the linearity/symmetricity of conductance modulation. Through simple but systematic electrochemical analysis, these results offer useful insights for the selection of components for high-performing artificial synapses.

키워드

electrochemical analysis; ion dynamics; artificialsynapses; electrolyte-gated transistors; neuromorphiccomputing; POLYMER ELECTROLYTES; CONDUCTIVITY; INTELLIGENCE; MEMORY; NA+
제목
Electrochemical Analysis of Ion Effects on Electrolyte-Gated Synaptic Transistor Characteristics
저자
Lee, Haeyeon; Cho, Jinil; Jin, Minho; Lee, Jae Hak; Lee, Chan; Kim, Jiyeon; Lee, Jiho; Shin, Jong Chan; Yoo, Jeeyoung; Lee, Eungkyu; Kim, Youn Sang
DOI
10.1021/acsnano.3c10082
발행일
2024-02-07
유형
Article
저널명
ACS Nano
권
18
호
7
페이지
5383 ~ 5395