Publication result detail

A New Method for 2D Materials Properties Modulation by Controlled Induced Mechanical Strain

GABLECH, I.; PEKÁREK, J.; KLEMPA, J.; VYROUBAL, P.; SVATOŠ, V.; NEUŽIL, P.

Original Title

A New Method for 2D Materials Properties Modulation by Controlled Induced Mechanical Strain

English Title

A New Method for 2D Materials Properties Modulation by Controlled Induced Mechanical Strain

Type

Paper in proceedings (conference paper)

Original Abstract

This paper proposes a new method for characterization of 2D materials under the precisely specified conditions. It is achieved by integration of a 2D material as a field effect transistors structures with a piezoelectric resonator. Properties of the 2D material can be mechanically adjusted by the resonator. It results in the independent and precise control of an amplitude of induced mechanical strain, its modulating frequency, which all influence the 2D material properties. The electrical field required to measure 2D material field effect transistors will not be affected by the vibrations, thus giving us a chance to perform the precise measurement of the electrical properties of the 2D material. This approach has a great potential for measuring and monitoring cells, enzymes, nucleic acids, deoxyribonucleic acid and ribonucleic acid. It can be also used for measurement of toxic, combustive or waste gases.

English abstract

This paper proposes a new method for characterization of 2D materials under the precisely specified conditions. It is achieved by integration of a 2D material as a field effect transistors structures with a piezoelectric resonator. Properties of the 2D material can be mechanically adjusted by the resonator. It results in the independent and precise control of an amplitude of induced mechanical strain, its modulating frequency, which all influence the 2D material properties. The electrical field required to measure 2D material field effect transistors will not be affected by the vibrations, thus giving us a chance to perform the precise measurement of the electrical properties of the 2D material. This approach has a great potential for measuring and monitoring cells, enzymes, nucleic acids, deoxyribonucleic acid and ribonucleic acid. It can be also used for measurement of toxic, combustive or waste gases.

Keywords

2D materials; induced strain; piezoelectric resonator; FET structure

Key words in English

2D materials; induced strain; piezoelectric resonator; FET structure

Authors

GABLECH, I.; PEKÁREK, J.; KLEMPA, J.; VYROUBAL, P.; SVATOŠ, V.; NEUŽIL, P.

RIV year

2019

Released

07.12.2018

Publisher

MDPI

Location

Basel, Switzerland

Book

Proceedings, Eurosensors 2018

ISBN

2504-3900

Periodical

Proceedings

Volume

2

Number

13

State

Swiss Confederation

Pages from

1

Pages to

5

Pages count

5

URL

Full text in the Digital Library

BibTex

@inproceedings{BUT151713,
  author="Imrich {Gablech} and Jan {Pekárek} and Jaroslav {Klempa} and Petr {Vyroubal} and Vojtěch {Svatoš} and Pavel {Neužil}",
  title="A New Method for 2D Materials Properties Modulation by Controlled Induced Mechanical Strain",
  booktitle="Proceedings, Eurosensors 2018",
  year="2018",
  journal="Proceedings",
  volume="2",
  number="13",
  pages="1--5",
  publisher="MDPI",
  address="Basel, Switzerland",
  doi="10.3390/proceedings2131513",
  issn="2504-3900",
  url="https://www.mdpi.com/2504-3900/2/13/1513"
}