Highly Reliable Electronic Synapse Based on Au@Al2O3 Core-Shell Nanoparticles for Neuromorphic Applications

  • Ma, Fumin
  • Xu, Zhongwei
  • Liu, Yang
  • Zheng, Yueting
  • Chen, Wei
  • 외 5명
Citations

WEB OF SCIENCE

9
Citations

SCOPUS

10

초록

Simulating synaptic function and building brain-inspired computers have received widespread attention. The memristor is considered to be an electronic version of the synapse and an excellent element for creating a brand-new artificial intelligence system in the future. However, most memristor-based electronic synapses currently exhibit low stability due to complex resistance switching processes. Based on a controllable in-situ formation strategy that we were able to employ with atomic layer deposition, we fabricated electronic synapses based on Au@Al2O3 core-shell nanoparticles. Our device exhibited extremely reliable, stable, and durable performance and showed a capability to emulate biological synaptic behavior, including synaptic plasticity, long-term depression (LTD), long-term potentiation (LTP), amplitude dependence, and frequency dependence. This research provides a strategy for manufacturing highly-reliable electronic synapses for neuromorphic applications.

키워드

Electronic synapseAu nanoparticlememristorartificial intelligenceatomic layer depositionin-situ formationAluminaAluminum oxideArtificial intelligenceAtomic layer depositionGold nanoparticlesIndustrial researchMemristorsNanoparticlesShells (structures)Amplitude dependenceArtificial intelligence systemsAu nanoparticleElectronic synapseIn-situ formationsLong term depressionLong-term potentiationsMemristorCore shell nanoparticles
제목
Highly Reliable Electronic Synapse Based on Au@Al2O3 Core-Shell Nanoparticles for Neuromorphic Applications
저자
Ma, FuminXu, ZhongweiLiu, YangZheng, YuetingChen, WeiHu, HailongGuo, TailiangLi, FushanWu, ChaoxingKim, Tae Whan
DOI
10.1109/LED.2019.2934895
발행일
2019-10
유형
Article
저널명
IEEE Electron Device Letters
40
10
페이지
1610 ~ 1613