Ferroelectric Materials for Synaptic Transistors and Their Neuromorphic Applications

Fuente: arXiv
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Main Author: Wang, Zexin
Format: Preprint
Published: 2024
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_version_ 1866909228040454144
author Wang, Zexin
author_facet Wang, Zexin
contents After more than a hundred years of development, ferroelectric materials have demonstrated their strong potential to people, and more and more ferroelectric materials are being used in the research of ferroelectric transistors (FeFETs). As a new generation of neuromorphic devices, ferroelectric materials have attracted people's attention due to their powerful functions and many characteristics. This article summarizes the development of ferroelectric material systems in recent years and discusses the simulation of artificial synapses. The mainstream ferroelectric materials are divided into traditional perovskite structure, fluorite structure, organic polymer, and new 2D van der Waals ferroelectricity. The principles, research progress, and optimization for brain like computers of each material system are introduced, and the latest application progress is summarized. Finally, the scope of application of different material systems is discussed, with the aim of helping people screen out different material systems based on different needs.
format Preprint
id arxiv_https___arxiv_org_abs_2406_13946
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Ferroelectric Materials for Synaptic Transistors and Their Neuromorphic Applications
Wang, Zexin
Applied Physics
Materials Science
Emerging Technologies
After more than a hundred years of development, ferroelectric materials have demonstrated their strong potential to people, and more and more ferroelectric materials are being used in the research of ferroelectric transistors (FeFETs). As a new generation of neuromorphic devices, ferroelectric materials have attracted people's attention due to their powerful functions and many characteristics. This article summarizes the development of ferroelectric material systems in recent years and discusses the simulation of artificial synapses. The mainstream ferroelectric materials are divided into traditional perovskite structure, fluorite structure, organic polymer, and new 2D van der Waals ferroelectricity. The principles, research progress, and optimization for brain like computers of each material system are introduced, and the latest application progress is summarized. Finally, the scope of application of different material systems is discussed, with the aim of helping people screen out different material systems based on different needs.
title Ferroelectric Materials for Synaptic Transistors and Their Neuromorphic Applications
topic Applied Physics
Materials Science
Emerging Technologies
url https://arxiv.org/abs/2406.13946