Endurance and Cycle-to-cycle Uniformity Improvement in Tri-Layered CeO2/Ti/CeO2 Resistive Switching Devices by Changing Top Electrode Material

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作者
Anwar Manzoor Rana
Tahira Akbar
Muhammad Ismail
Ejaz Ahmad
Fayyaz Hussain
Ijaz Talib
Muhammad Imran
Khalid Mehmood
Khalid Iqbal
M. Younus Nadeem
机构
[1] Thin Films Laboratory,Department of Physics
[2] Bahauddin Zakariya University,Department of Physics
[3] Government College University Faisalabad,Department of Radiation Oncology
[4] Institute of Chemical Sciences,undefined
[5] Bahauddin Zakariya University,undefined
[6] Shaukat Khanum Memorial Cancer Hospital and Research Centre,undefined
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Scientific Reports | / 7卷
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摘要
Resistance switching characteristics of CeO2/Ti/CeO2 tri-layered films sandwiched between Pt bottom electrode and two different top electrodes (Ti and TaN) with different work functions have been investigated. RRAM memory cells composed of TaN/CeO2/Ti/CeO2/Pt reveal better resistive switching performance instead of Ti/CeO2/Ti/CeO2/Pt memory stacks. As compared to the Ti/CeO2 interface, much better ability of TaN/CeO2 interface to store and exchange plays a key role in the RS performance improvement, including lower forming/SET voltages, large memory window (~102) and no significant data degradation during endurance test of >104 switching cycles. The formation of TaON thinner interfacial layer between TaN TE and CeO2 film is found to be accountable for improved resistance switching behavior. Partial charge density of states is analyzed using density functional theory. It is found that the conductive filaments formed in CeO2 based devices is assisted by interstitial Ti dopant. Better stability and reproducibility in cycle-to-cycle (C2C) resistance distribution and Vset/Vreset uniformity were achieved due to the modulation of current conduction mechanism from Ohmic in low field region to Schottky emission in high field region.
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