Biocompatible memristive device based on an agarose@gold nanoparticle-nanocomposite layer obtained from nature for neuromorphic computing

  • Kim, Youngjin
  • An, Jun Seop
  • Lee, Donghee
  • Ryu, Seong Yeon
  • Hwang, Yoon-Chul
  • 외 2명
Citations

WEB OF SCIENCE

16
Citations

SCOPUS

16

초록

Natural, organic, materials-based artificial synaptic devices have been in the spotlight for wearable/flexible devices due to their lightweight, biocompatibility, and scalability. In this study, an electronic memristive device based on agarose extracted from plants in the Rhodophyceae class was fabricated, and its memory characteristics and analog data processing capabilities were evaluated. The Al/agarose@gold nanoparticle (AuNP) film/indium-tin-oxide (ITO)-structured memristive device exhibited reliable resistive switching characteristics with excellent retention with a large Ron/Roff ratio of 104. Also, analog conductance changes in our device were achieved with power consumption at the pJ level. This notable behavior could be maintained under mechanical deformations from a flat to a 4-mm bent state. In the recognition simulation based on the device's performance, an 91% accuracy and clear digit classification were achieved.

키워드

RESISTIVE SWITCHING MEMORYBEHAVIOR
제목
Biocompatible memristive device based on an agarose@gold nanoparticle-nanocomposite layer obtained from nature for neuromorphic computing
저자
Kim, YoungjinAn, Jun SeopLee, DongheeRyu, Seong YeonHwang, Yoon-ChulKim, Dae HunKim, Tae Whan
DOI
10.1038/s41598-023-32860-6
발행일
2023-04
유형
Article
저널명
Scientific Reports
13
1
페이지
1 ~ 9

파일 다운로드