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基于原子层沉积氧化铁的多层忆阻器。

A multi-level memristor based on atomic layer deposition of iron oxide.

机构信息

Politecnico di Torino, Applied Science and Technology Department, Corso Duca degli Abruzzi 24, I-10129 Torino, Italy.

出版信息

Nanotechnology. 2018 Dec 7;29(49):495201. doi: 10.1088/1361-6528/aae2ff. Epub 2018 Sep 20.

Abstract

This work reports the fabrication of memristive devices based on iron oxide (FeO) thin films grown by atomic layer deposition (ALD) using ferrocene as iron precursor and ozone as oxidant. An excellent control of the ALD process was achieved by using an experimental procedure based on a sequence of micro-pulses, which provided long residence time and homogeneous diffusion of precursors, allowing ALD of thin films with smooth morphology and crystallinity which was found to increase with layer thickness, at temperatures as low as 250 °C. The resistive switching of symmetric Pt/FeO/Pt thin film devices exhibited bipolar mode with good stability and endurance. Multi-level switching was achieved via current and voltage control. It was proved that the ON state regime can be tuned by changing the current compliance while the OFF state can be changed to intermediate levels by decreasing the maximum voltage during RESET. The structural analysis of the switched oxide layer revealed the presence of nano-sized crystalline domains corresponding to different iron oxide phases, suggesting that Joule heating effects during I-V cycling are responsible for a crystallization process of the pristine amorphous layer.

摘要

这项工作报道了使用原子层沉积(ALD)技术,以二茂铁作为铁前体,臭氧作为氧化剂,制备基于氧化铁(FeO)薄膜的忆阻器器件。通过使用基于微脉冲序列的实验程序,可以实现对 ALD 工艺的出色控制,该程序提供了较长的停留时间和前体的均匀扩散,从而可以在低至 250°C 的温度下,在薄膜上实现具有平滑形貌和结晶度的 ALD。对称的 Pt/FeO/Pt 薄膜器件的电阻开关表现出双极模式,具有良好的稳定性和耐久性。通过电流和电压控制可以实现多级开关。实验证明,通过改变电流容限可以调节导通状态,而通过在重置过程中降低最大电压,可以将关断状态切换到中间电平。对开关氧化层的结构分析表明,存在对应于不同氧化铁相的纳米级晶畴,这表明在 I-V 循环过程中的焦耳加热效应负责原始非晶层的结晶过程。

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