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通过插入TiO层提高基于ZrN的电阻式存储器件的稳定性和可控性。

Improved Stability and Controllability in ZrN-Based Resistive Memory Device by Inserting TiO Layer.

作者信息

Choi Junhyeok, Kim Sungjun

机构信息

Division of Electronics and Electrical Engineering, Dongguk University, Seoul 04620, Korea.

出版信息

Micromachines (Basel). 2020 Sep 29;11(10):905. doi: 10.3390/mi11100905.

Abstract

In this work, the enhanced resistive switching of ZrN-based resistive switching memory is demonstrated by embedding TiO layer between Ag top electrode and ZrN switching layer. The Ag/ZrN/n-Si device exhibits unstable resistive switching as a result of the uncontrollable Ag migration. Both unipolar and bipolar resistive switching with high RESET current were observed. Negative-SET behavior in the Ag/ZrN/n-Si device makes set-stuck, causing permanent resistive switching failure. On the other hand, the analogue switching in the Ag/TiO/ZrN/n-Si device, which could be adopted for the multi-bit data storage applications, is obtained. The gradual switching in Ag/TiO/ZrN/n-Si device is achieved, possibly due to the suppressed Ag diffusion caused by TiO inserting layer. The current-voltage (I-V) switching characteristics of Ag/ZrN/n-Si and Ag/TiO/ZrN/n-Si devices can be well verified by pulse transient. Finally, we established that the Ag/TiO/ZrN/n-Si device is suitable for neuromorphic application through a comparison study of conductance update. This paper paves the way for neuromorphic application in nitride-based memristor devices.

摘要

在这项工作中,通过在银顶电极和氮化锆开关层之间嵌入二氧化钛层,展示了基于氮化锆的电阻式开关存储器的增强电阻开关特性。由于银的迁移不可控,银/氮化锆/ n型硅器件表现出不稳定的电阻开关特性。观察到具有高复位电流的单极和双极电阻开关。银/氮化锆/ n型硅器件中的负置位行为导致置位卡住,从而导致永久性电阻开关故障。另一方面,获得了银/二氧化钛/氮化锆/ n型硅器件中的模拟开关特性,可用于多位数据存储应用。银/二氧化钛/氮化锆/ n型硅器件中的逐渐开关特性得以实现,这可能是由于二氧化钛插入层抑制了银的扩散。银/氮化锆/ n型硅和银/二氧化钛/氮化锆/ n型硅器件的电流-电压(I-V)开关特性可以通过脉冲瞬态很好地验证。最后,通过电导更新的比较研究,我们确定银/二氧化钛/氮化锆/ n型硅器件适用于神经形态应用。本文为基于氮化物的忆阻器器件在神经形态应用方面铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/172f/7600328/806f09b51470/micromachines-11-00905-g001.jpg

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