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Improved Performance of NbO<sub>x</sub> Resistive Switching Memory by In-Situ N Doping
oleh: Jing Xu, Yuanyuan Zhu, Yong Liu, Hongjun Wang, Zhaorui Zou, Hongyu Ma, Xianke Wu, Rui Xiong
Format: | Article |
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Diterbitkan: | MDPI AG 2022-03-01 |
Deskripsi
Valence change memory (VCM) attracts numerous attention in memory applications, due to its high stability and low energy consumption. However, owing to the low on/off ratio of VCM, increasing the difficulty of information identification hinders the development of memory applications. We prepared N-doped NbO<sub>x</sub>:N films (thickness = approximately 15 nm) by pulsed laser deposition at 200 °C. N-doping significantly improved the on/off ratio, retention time, and stability of the Pt/NbO<sub>x</sub>:N/Pt devices, thus improving the stability of data storage. The Pt/NbO<sub>x</sub>:N/Pt devices also achieved lower and centralized switching voltage distribution. The improved performance was mainly attributed to the formation of oxygen vacancy (V<sub>O</sub>) + 2N clusters, which greatly reduced the ionic conductivity and total energy of the system, thus increasing the on/off ratio and stability. Moreover, because of the presence of Vo + 2N clusters, the conductive filaments grew in more localized directions, which led to a concentrated distribution of SET and RESET voltages. Thus, in situ <i>N</i>-doping is a novel and effective approach to optimize device performances for better information storage and logic circuit applications.