神经形态工程学
材料科学
铁电性
非易失性存储器
记忆电阻器
数码产品
纳米技术
光电子学
电子工程
电气工程
人工神经网络
人工智能
计算机科学
电介质
工程类
作者
Lin Wang,Xiaojie Wang,Yishu Zhang,Runlai Li,Teng Ma,Kai Leng,Zhi Chen,Ibrahim Abdelwahab,Kian Ping Loh
标识
DOI:10.1002/adfm.202004609
摘要
Abstract Recently, 2D ferroelectrics have attracted extensive interest as a competitive platform for implementing future generation functional electronics, including digital memory and brain‐inspired computing circuits. Fulfilling their potential requires achieving the interplay between ferroelectricity and electronic characteristics on the device operation level, which is currently lacking since most studies are focused on the verification of ferroelectricity from different 2D materials. Here, by leveraging the ferroelectricity and semiconducting properties of α‐In 2 Se 3 , ferroelectric semiconductor field‐effect transistors (FeSFETs) are fabricated and their potential as artificial synapses is demonstrated. Multiple conductance states can be induced in α‐In 2 Se 3 ‐based FeSFETs by controlling the out‐of‐plane polarization, which enables the device to faithfully mimic biosynaptic behaviors. In comparison with charge‐trapping‐based three‐terminal synaptic devices, the electronic synapses based on α‐In 2 Se 3 have the advantages of good controllability, fast learning, and easy integration of gate dielectric, rendering them promising for neuromorphic computing. In addition, an abnormal resistive switching phenomenon in α‐In 2 Se 3 is reported when operated in the in‐plane ferroelectric switching mode. The findings pave the way forward for α‐In 2 Se 3 ‐based FeSFETs for developing neuromorphic devices in brain‐inspired intelligent systems.
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