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Effects of different tunnel layers on retention characteristics for Pd-nanocrystal-based nonvolatile memory
期刊文章

Effects of different tunnel layers on retention characteristics for Pd-nanocrystal-based nonvolatile memory

T.-K. Kang, T.-C. Liao, H.-W. Liu, F.-H. Wang 和 W.-F. Wu
Microelectronic Engineering, 卷.95, 頁碼.59-64
2012
Web of Science ID: WOS:000304515700010

摘要

HfAlO Pd nanocrystal Retention characteristic Thermal expansion Thermal stress Annealing Nanocrystals Thermal expansion Thermal stress Annealing temperatures Coefficients of thermal expansions Electrical analysis HfAlO Induced defects Memory window Nanocrystal formation Non-volatile memories Retention characteristics Room temperature Separated wells Shallow traps Tunnel oxides Palladium
Thin Pd metal cannot be separated well into Pd nanocrystals (NCs) on 4-nm-thick SiO 2/Si, but the Pd nanocrystals about 5 nm in diameter can be produced very easily on 4-nm-thick HfAlO/Si at room temperature. Owing to a huge thermal stress in SiO 2 film during Pd nanocrystal formation at 500°C; it results in a large number of leakage current paths and shallow traps in SiO 2 film, which leads to a worse retention characteristics. From some material and electrical analyses, these induced defects mainly result from the interfacial reaction and thermal stress due to different coefficients of thermal expansion between Pd and tunnel layer during Pd annealing. However, fewer leakage current paths and shallow traps in HfAlO film result in a better retention characteristic. The degradation of retention characteristic is more obvious with annealing temperature, and the final memory window is 0.95 V for 900°C annealed Pd NCs nonvolatile memory with HfAlO tunnel oxide. © 2012 Elsevier B.V. All rights reserved.

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