Publication detail

Organic electrochemical transistor based on ionic liquid: The temperature effect

PLESNÍKOVÁ, L. POSPÍŠIL, J. MRAČEK, L. SYROVÝ, T. HAMÁČEK, A. NEŠPŮREK, S. ZMEŠKAL, O.

Original Title

Organic electrochemical transistor based on ionic liquid: The temperature effect

Type

conference paper

Language

English

Original Abstract

The paper is focused on the study of electric and temperature properties of electrochemical transistor based on ionic liquid, 1-ethyl-3-methylimidazolium ethyl sulfate. The transistor shows good output source-drain characteristics. The switching characteristics are as follows: The current switching is from -1.1x10(-4) A to -1.5x10(-7)A, i.e., the switching ratio is about 700. The current kinetics can be described by stretched exponential function. The current-temperature dependence follows well the Arrhenius equation. Activation energy of the source-drain current is 0.1 eV in the closed state and 0.02 eV in the open state. Both activation energies are voltage independent.

Keywords

Organic electrochemical transistors

Authors

PLESNÍKOVÁ, L.; POSPÍŠIL, J.; MRAČEK, L.; SYROVÝ, T.; HAMÁČEK, A.; NEŠPŮREK, S.; ZMEŠKAL, O.

Released

18. 7. 2018

ISBN

978-0-7354-1704-5

Book

Meeting of Thermophysics 2018. AIP conference proceedings

ISBN

0094-243X

Periodical

AIP conference proceedings

Year of study

1988

Number

1

State

United States of America

Pages from

1

Pages to

6

Pages count

6

URL

BibTex

@inproceedings{BUT149194,
  author="Lucie {Maráčková} and Jan {Pospíšil} and Lukáš {Mraček} and Tomáš {Syrový} and Aleš {Hamáček} and Stanislav {Nešpůrek} and Oldřich {Zmeškal}",
  title="Organic electrochemical transistor based on ionic liquid: The temperature effect",
  booktitle="Meeting of Thermophysics 2018. AIP conference proceedings",
  year="2018",
  journal="AIP conference proceedings",
  volume="1988",
  number="1",
  pages="1--6",
  doi="10.1063/1.5047632",
  isbn="978-0-7354-1704-5",
  issn="0094-243X",
  url="https://aip.scitation.org/doi/10.1063/1.5047632"
}