Formation of reliable Pb(Ti,Zr)O3 thin-film capacitors for read/write endurance of ferroelectric non-volatile memories
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Aoki, K
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Texas Instruments Tsukuba Res & Dev Ctr Ltd, Tsukuba, Ibaraki 3050841, JapanTexas Instruments Tsukuba Res & Dev Ctr Ltd, Tsukuba, Ibaraki 3050841, Japan
Aoki, K
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Fukuda, Y
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机构:Texas Instruments Tsukuba Res & Dev Ctr Ltd, Tsukuba, Ibaraki 3050841, Japan
Fukuda, Y
Numata, K
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机构:Texas Instruments Tsukuba Res & Dev Ctr Ltd, Tsukuba, Ibaraki 3050841, Japan
Numata, K
Nishimura, A
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机构:Texas Instruments Tsukuba Res & Dev Ctr Ltd, Tsukuba, Ibaraki 3050841, Japan
Nishimura, A
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[1] Texas Instruments Tsukuba Res & Dev Ctr Ltd, Tsukuba, Ibaraki 3050841, Japan
[2] Texas Instruments Inc, Memory Res & Dev Ctr, Dallas, TX 75243 USA
Recently, reliable Pb (Ti, Zr) O-3 (PZT) thin-film capacitors with robust switching endurance were fabricated successfully by incorporating oxidizable metal and oxide electrodes. However, the reasons for the drastic improvement in the switching endurance property was not clear. Degradation of polarizations by switching is called "polarization fatigue." This paper describes the mechanisms of polarization fatigue, and discusses ways for improving of that property from the standpoints of microstructure, and of interactions between the PZT and the electrode materials of the capacitors. It is clearly identified that the causes of the fatigue are the unexpected formation of a surface transition layer of PZT, which is strongly dependent on the crystallization process, and a decrease in the interfacial capacitances due to the accumulation of oxygen vacancies between the PZT and non-oxidizable metal electrodes with high work functions such as Pt. Oxidizable metal and oxide electrodes suppress by oxidation-reduction reactions the accumulation of oxygen vacancies. Fatigue-free PZT thin-film capacitors can be formed if oxidizable metal or conductive oxide electrodes are incorporated in columnar-grain-structured PZT thin-film. In sharp contrast, fatigue and retention properties of PZT thin-film capacitors with Ir electrodes were degraded by modification of the PZT with 1 atm%-Nb and 1 atm%-La even though its grain structures were columnar.
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Department of Ceramic Science and Engineering, Changwon National University, Changwon, Kyongnam 641-773, Korea, Republic ofDepartment of Ceramic Science and Engineering, Changwon National University, Changwon, Kyongnam 641-773, Korea, Republic of
Song, Tae Kwon
Kim, Dal-Young
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School of Materials Science and Engineering, Seoul National University, Seoul 151-741, Korea, Republic ofDepartment of Ceramic Science and Engineering, Changwon National University, Changwon, Kyongnam 641-773, Korea, Republic of