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[논문] Ionic liquid multistate resistive switching characteristics in two terminal soft and flexible discrete channels for neuromorphic computing

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논문제목(Title)

[논문] Ionic liquid multistate resistive switching characteristics in two terminal soft and flexible discrete channels for neuromorphic computing

학술지명(Journal)

Microsystems & Nanoengineering

ImpactFactor

8.006

ISSN_ISBN

2055-7434

학술지볼륨권호(Volume)

8

SCI구분

SCIE

초록(Abstract)

By exploiting ion transport phenomena in a soft and flexible discrete channel, liquid material conductance can be controlled by using an electrical input signal, which results in analog neuromorphic behavior. This paper proposes an ionic liquid (IL) multistate resistive switching device capable of mimicking synapse analog behavior by using IL BMIM FeCL4 and H2O into the two ends of a discrete polydimethylsiloxane (PDMS) channel. The spike rate-dependent plasticity (SRDP) and spike-timing-dependent plasticity (STDP) behavior are highly stable by modulating the input signal. Furthermore, the discrete channel device presents highly durable performance under mechanical bending and stretching. Using the obtained parameters from the proposed ionic liquid-based synaptic device, convolutional neural network simulation runs to an image recognition task, reaching an accuracy of 84%. The bending test of a device opens a new gateway for the future of soft and flexible brain-inspired neuromorphic computing systems for various shaped artificial intelligence applications.

저자명(Author)

Muhammad Umair Khan, Jungmin Kim, Mahesh Y. Chougale, Chaudhry Muhammad Furqan, Qazi Muhammad Saqib, Rayyan Ali Shaukat, Nobuhiko P. Kobayashi, Baker Mohammad, Jinho Bae and Hoi-Sing Kwok

학술지출판일자(PublicationDate)

2022-05-26

DMP

연구책임자 / 소속

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당해연구기간

2022.03.01-2023.02.28

공개 및 라이선스

공개 일자

2022-12-13

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공개일자
2022-12-13
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  • Version 1 2022-12-05
Cite as
Muhammad Umair Khan, Jungmin Kim, Mahesh Y. Chougale, Chaudhry Muhammad Furqan, Qazi Muhammad Saqib, Rayyan Ali Shaukat, Nobuhiko P. Kobayashi, Baker Mohammad, Jinho Bae and Hoi-Sing Kwok, 2022-05-26, [논문] Ionic liquid multistate resistive switching characteristics in two terminal soft and flexible discrete channels for neuromorphic computing
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