Please use this identifier to cite or link to this item: https://essuir.sumdu.edu.ua/handle/123456789/77375
Or use following links to share this resource in social networks: Recommend this item
Title Bipolar Resistive Switching Characteristics of Ex-situ Synthesized TiO2-ZnO Nanocomposite
Authors Amate, Rutuja U.
Morankar, Pritam J.
Mullani, Navaj B.
Khot, Kishorkumar V.
Kamat, Rajanish K.
Dongale, Tukaram D.
Kim, Deok-kee
ORCID
Keywords memristive device
nanocomposite
resistive switching
Type Article
Date of Issue 2020
URI https://essuir.sumdu.edu.ua/handle/123456789/77375
Publisher Sumy State University
License
Citation Bipolar Resistive Switching Characteristics of Ex-situ Synthesized TiO2-ZnO Nanocomposite [Текст] / Rutuja U. Amate, Pritam J. Morankar, Navaj B. Mullani [et al.] // Журнал нано- та електронної фізики. – 2020. – Т. 12, № 2. – 02025. – DOI: 10.21272/jnep.12(2).02025.
Abstract In this present article, we have reported a simple and cost-effective ex-situ synthesis of TiO2-ZnO (TZ) nanocomposite thin film by utilizing sol-gel, hydrothermal and solid-state reaction methods. The Ag/TZ/FTO nanocomposite device was developed and demonstrated the bipolar resistive switching (RS) characteristics for resistive memory applications. The result of XRD analysis confirms that the nanocomposite has mixed tetragonal and hexagonal crystal structures of TiO2 and ZnO, respectively. The hysteresis loop is an essential criterion for recognizing memristive devices and similar characteristic was noticed for the developed nanocomposite device. Besides, basic memristive properties were calculated from the I-V data. The charge transportation of Ag/TZ/FTO nanocomposite device takes place because of Ohmic and space charge limited current. The collective effect of oxygen vacancies and Ag ions was a basis of RS effect in the Ag/TZ/FTO nanocomposite device.
Appears in Collections: Журнал нано- та електронної фізики (Journal of nano- and electronic physics)

Views

Belgium Belgium
1
China China
1690754
Finland Finland
1
Germany Germany
1
Greece Greece
1
India India
896401967
Ireland Ireland
19857
Lithuania Lithuania
1
Pakistan Pakistan
1
Singapore Singapore
-419103667
South Korea South Korea
464547466
Ukraine Ukraine
232273796
United Kingdom United Kingdom
32692961
United States United States
-2046731260
Unknown Country Unknown Country
-838207334
Vietnam Vietnam
784

Downloads

Germany Germany
1
India India
896401968
Japan Japan
1
Lithuania Lithuania
1
Singapore Singapore
1
South Korea South Korea
23097086
Ukraine Ukraine
464547466
United Kingdom United Kingdom
1
United States United States
-419103666
Unknown Country Unknown Country
1
Vietnam Vietnam
1

Files

File Size Format Downloads
Rutuja_U_Amate_JNEP_2_2020.pdf 862.33 kB Adobe PDF 964942861

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.