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Unraveling the Effect of the Water Content in the Electrolyte on the Resistive Switching Properties of Self-Assembled One-Dimensional Anodized TiO2 Nanotubes

Authors
Nirmal, Kiran A.Nhivekar, Ganesh S.Khot, Atul C.Dongale, Tukaram D.Kim, Tae Geun
Issue Date
25-8월-2022
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, v.13, no.33, pp.7870 - 7880
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume
13
Number
33
Start Page
7870
End Page
7880
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/143767
DOI
10.1021/acs.jpclett.2c01075
ISSN
1948-7185
Abstract
The applied potential, time, and water content are crucial factors in the electrochemical anodization process because the growth of one-dimensional nanotubes can be accelerated by enhancing the corrosive effect. We investigated the effect of the water content on the resistive switching (RS) properties of Ti foils by anodizing the foils and varying the water content in an electrolyte (1-10 vol %). By increasing the water content, we facilitated a slow transition from nanopores to nanotubes and realized an increase in the tube wall diameter and tube length. All of the fabricated memristive devices exhibited a reliable and reproducible bipolar resistive switching effect. The optimized device exhibited bipolar RS properties with good dc endurance (10(4) cycles) and data retention capability (10(5) s). Our results suggest that as the water content increases to 5 vol %, the RS process improves; further increases in the water content impair the RS process.
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