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Neuromorphic device based on silicon nanosheets

Engineering and Technology

Neuromorphic device based on silicon nanosheets

C. Wang, X. Xu, et al.

Explore groundbreaking neuromorphic devices crafted from silicon nanosheets by Chenhao Wang and colleagues. This innovative research reveals how these devices can alternatively function as a unipolar memristor and a resettable synaptic device, potentially revolutionizing the future of neural computation with applications in digit recognition and noise filtration.... show more
Abstract
Silicon is vital for its high abundance, vast production, and perfect compatibility with the well-established CMOS processing industry. Recently, artificially stacked layered 2D structures have gained tremendous attention via fine-tuning properties for electronic devices. This article presents neuromorphic devices based on silicon nanosheets that are chemically exfoliated and surface-modified, enabling self-assembly into hierarchical stacking structures. The device functionality can be switched between a unipolar memristor and a feasibly reset-able synaptic device. The memory function of the device is based on the charge storage in the partially oxidized SiNS stacks followed by the discharge activated by the electric field at the Au-Si Schottky interface, as verified in both experimental and theoretical means. This work further inspired elegant neuromorphic computation models for digit recognition and noise filtration. Ultimately, it brings silicon - the most established semiconductor - back to the forefront for next-generation computations.
Publisher
Nature Communications
Published On
Sep 05, 2022
Authors
Chenhao Wang, Xinyi Xu, Xiaodong Pi, Mark D. Butala, Wen Huang, Lei Yin, Wenbing Peng, Munir Ali, Srikrishna Chanakya Bodepudi, Xvsheng Qiao, Yang Xu, Wei Sun, Deren Yang
Tags
neuromorphic devices
silicon nanosheets
memristor
synaptic device
charge storage
electric-field discharge
neuromorphic computation
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