3. “Formation and disappearance of a nanoscale silver clusters realized by solid
electrochemical reaction”
K. Terabe, T. Nakayama, T. Hasegawa, and M. Aono
Journal of Applied Physics 91 (2002) 10110–10114.
DOI: 10.1063/1.1481775
2003
4. “Nanometer-scale switches using copper sulfide”
T. Sakamoto, H. Sunamura, H. Kawaura, T. Hasegawa, T. Nakayama, and
M. Aono
Applied Physics Letters 82 (2003) 3032–3034.
DOI: 10.1063/1.1572964
2004
5. “A nonvolatile programmable solid electrolyte nanometer switch”
T. Sakamoto, S. Kaeriyama, H. Sunamura, M. Mizuno, H. Kawaura,
T. Hasegawa, K. Terabe, T. Nakayama, and M. Aono
2004 IEEE International Solid-State Circuits Conference Digest of Technical
Papers 290–291.
2005
6. “Quantized conductance atomic switch”
K. Terabe, T. Hasegawa, T. Nakayama, and M. Aono
Nature 433 (2005) 47–50.
DOI: 10.1038/nature03190
7. “Ionic-electronic conductor nanostructures: template-confined growth and
nonlinear electrical transport”
C. H. Liang, K. Terabe, T. Hasegawa, R. Negishi, T. Tamura, and M. Aono
Small 10 (2005) 971–975.
DOI: 10.1002/smll.200500155
8. “A nonvolatile programmable solid-electrolyte nanometer switch”
S. Kaeriyama, T. Sakamoto, H. Sunamura, M. Mizuno, H. Kawaura,
T. Hasegawa, K. Terabe, and M. Aono
IEEE J. Solid-State Circuits 40 (2005) 168–176.
DOI: 10.1109/JSSC.2004.837244
9. “Three terminal solid-electrolyte nanometer switch”
T. Sakamoto, N. Banno, N. Iguchi, H. Kawaura, S. Kaeriyama, M. Mizuno,
K. Terabe, T. Hasegawa, and M. Aono
2005 International Electron Device Meeting, 489–492.
DOI: 10.1109/IEDM.2005.1609383
2006
10. “Template synthesis of M/M 2 S (M ¼ Ag,Cu) hetero-nanowires by electrochemical technique”
C. H. Liang, K. Terabe, T. Hasegawa, and M. Aono
246
T. Tsuruoka and M. Aono
electrochemical reaction”
K. Terabe, T. Nakayama, T. Hasegawa, and M. Aono
Journal of Applied Physics 91 (2002) 10110–10114.
DOI: 10.1063/1.1481775
2003
4. “Nanometer-scale switches using copper sulfide”
T. Sakamoto, H. Sunamura, H. Kawaura, T. Hasegawa, T. Nakayama, and
M. Aono
Applied Physics Letters 82 (2003) 3032–3034.
DOI: 10.1063/1.1572964
2004
5. “A nonvolatile programmable solid electrolyte nanometer switch”
T. Sakamoto, S. Kaeriyama, H. Sunamura, M. Mizuno, H. Kawaura,
T. Hasegawa, K. Terabe, T. Nakayama, and M. Aono
2004 IEEE International Solid-State Circuits Conference Digest of Technical
Papers 290–291.
2005
6. “Quantized conductance atomic switch”
K. Terabe, T. Hasegawa, T. Nakayama, and M. Aono
Nature 433 (2005) 47–50.
DOI: 10.1038/nature03190
7. “Ionic-electronic conductor nanostructures: template-confined growth and
nonlinear electrical transport”
C. H. Liang, K. Terabe, T. Hasegawa, R. Negishi, T. Tamura, and M. Aono
Small 10 (2005) 971–975.
DOI: 10.1002/smll.200500155
8. “A nonvolatile programmable solid-electrolyte nanometer switch”
S. Kaeriyama, T. Sakamoto, H. Sunamura, M. Mizuno, H. Kawaura,
T. Hasegawa, K. Terabe, and M. Aono
IEEE J. Solid-State Circuits 40 (2005) 168–176.
DOI: 10.1109/JSSC.2004.837244
9. “Three terminal solid-electrolyte nanometer switch”
T. Sakamoto, N. Banno, N. Iguchi, H. Kawaura, S. Kaeriyama, M. Mizuno,
K. Terabe, T. Hasegawa, and M. Aono
2005 International Electron Device Meeting, 489–492.
DOI: 10.1109/IEDM.2005.1609383
2006
10. “Template synthesis of M/M 2 S (M ¼ Ag,Cu) hetero-nanowires by electrochemical technique”
C. H. Liang, K. Terabe, T. Hasegawa, and M. Aono
246
T. Tsuruoka and M. Aono
