神经形态工程学
记忆电阻器
量子点
材料科学
突触重量
突触
电阻随机存取存储器
光电子学
纳米技术
电导
复合数
锡
突触可塑性
调制(音乐)
电阻式触摸屏
人工神经网络
计算机科学
长时程增强
电子工程
自组装
量子
作者
Fernando Ordonez Morales,Prabana Jetty,S. I. Kim,Somnath S. Kundale,Windy Ayu Lestari,Jaeyoung Seo,Namyoung Gwak,Hee‐Soo Kim,Sang Yong Nam,Nuri Oh,Jun Hong Park
标识
DOI:10.1021/acsmaterialslett.5c01003
摘要
As an emerging artificial synapse for emulating the human brain, the memristor is promising owing to its excellent ability to mimic synaptic functions. In this work, we report an analogue memristor based on a composite of hydrothermally oxidized Ti3C2Tx MXene and ligand-exchanged ZrO2 quantum dots (QDs), synthesized via a solution-based method using DMF at a 1:2 weight ratio. The resulting Ag/oxidized MXene-ZrO2 QDs/FTO (fluorine-doped tin oxide) memristor exhibits a transition from digital to analogue resistive switching (RS) due to the integration of the ZrO2 QDs. It supports 18 linearly modulated conductance levels, enabling multilevel memory storage beyond 4 bits. Its reliable and reconfigurable switching behavior supports synaptic weight modulation and image recognition tasks in an artificial neural network. The synergistic interaction between oxidized MXene and ZrO2 QDs in the composite enables low-power operational analogue memristors with tunable synaptic plasticity, making it suitable for next-generation neuromorphic computing devices.
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