Volatile and Nonvolatile Dual‐Mode Switching Operations in an Ag‐Ag2S Core‐Shell Nanoparticle Atomic Switch Network

Author:

Srikimkaew Oradee1ORCID,Ricci Saverio2ORCID,Porzani Matteo2ORCID,Dang Thien Tan1ORCID,Nakaoka Yusuke1ORCID,Usami Yuki13ORCID,Ielmini Daniele2ORCID,Tanaka Hirofumi143ORCID

Affiliation:

1. Graduate School of Life Science and Systems Engineering Kyushu Institute of Technology (Kyutech) 2–4 Hibikino, Wakamatsu Kitakyushu 808‐0196 Japan

2. Dipartimento di Elettronica Informazione e Bioingegneria (DEIB) Politecnico di Milano and IUNET piazza L. da Vinci 32 Milano 20133 Italy

3. Research Center for Neuromorphic AI Hardware, Kyutech Kitakyushu 808‐0196 Japan

4. School of Physics Institute of Science Suranaree University of Technology Nakhon Ratchasima 30000 Thailand

Abstract

AbstractThis paper proposes a nanoparticle‐based atomic switch network memristive device, capable of both volatile and nonvolatile switching operations, which have not been previously reported for this material. The operational modes can be determined by altering the compliance current, demonstrating high stability over 100 cycles. Analysis of the conduction mechanism using IV curves reveals switching characteristics consistent with space‐charge‐limited current conduction during the set process and ohmic behavior in the reset state. Furthermore, this study analyzes these dual‐operational modes in devices with varying electrode spacings. The results indicate that a wider spacing necessitated a higher compliance current for the volatile‐to‐nonvolatile transition, underscoring the significance of interconnection. These findings facilitate the integration of neuron and synapse functions within a single atomic switch network device, thereby advancing neuromorphic systems.

Funder

Japan Society for the Promotion of Science

Suranaree University of Technology

Thailand Science Research and Innovation

Japan Science and Technology Agency

ACT-X

Core Research for Evolutional Science and Technology

Publisher

Wiley

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