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2003


35. “Controlled Growth of Gallium Nitride Single Crystal Nanowires Using a Chemical Vapor Deposition Method”,
S. Han, W. Jin, T. Tang, C. Li, D. Zhang, X. Liu, J. Han, and C. Zhou,
J. of Mater. Res. 18, 245 – 249 (2003). (PDF)
Reported by MRS Bulletin (February 2003, p95).

34. “Fabrication Approach for Molecular Memory Arrays”,
C. Li, D. Zhang, X. Liu, S. Han, T. Tang, C. Zhou, W. Fan, J. Koehne, J. Han, M. Meyyapan, A.R. Rawlett, D.W. Price, J.M. Tour,
Appl. Phys. Lett. 82, 645 – 647 (2003). (PDF)
Our work was reported by Technology Research News and NSF. See:
http://www.trnmag.com/Stories/2003/061803/Prefab_key_to_molecular_memory_061803.html
http://www.eng.nsf.gov/engnews/2003/memoryarrays.htm

33. “Diameter-controlled Growth of Single-crystalline In2O3 Nanowires and Their Electronic Properties”,
C. Li, D. Zhang, S. Han, X. Liu, T. Tang, and C. Zhou,
Advanced Materials 15, 143 – 145 (2003). (PDF)

32. “Electronic Transport Studies of Single-Crystalline In2O3 Nanowires”,
D. Zhang, C. Li, S. Han, X. Liu, T. Tang, W. Jin, and C. Zhou,
Appl. Phys. Lett. 82, 112 – 114 (2003). (PDF)

31. “In2O3 Nanowires as Chemical Sensors”,
C. Li, D. Zhang, X. Liu, S. Han, T. Tang, J. Han, and C. Zhou,
Appl. Phys. Lett. 82, 1613 – 1615 (2003). (PDF)

30. “Ultraviolet Photodetecting Properties of Indium Oxide Nanowires”
D. Zhang, C. Li, S. Han, X. Liu, T. Tang, W. Jin and C. Zhou
Applied Physics A 77, 163 – 166 (2003). (PDF)

29. “Doping-dependent Ammonia Sensing of Indium Oxide Nanowires”,
D. Zhang, C. Li, X. Liu, S. Han, T. Tang, and C. Zhou,
Appl. Phys. Lett. 83, 1845 – 1847 (2003). (PDF)

28. “Chemical Gating of In2O3 Nanowires by Organic and Bio Molecules”,
C. Li, B. Lei, D. Zhang, X. Liu, S. Han, T. Tang, M. Rouhanizadeh, T. Hsiai, and C. Zhou,
Appl. Phys. Lett. 83, 4014 – 4016 (2003). (PDF)

27. “Surface Treatment and Doping Dependence of In2O3 Nanowires as Ammonia Sensors”,
C. Li, D. Zhang, S. Han, X. Liu, and C. Zhou,
J. of Phys. Chem. B 107, 12451 – 12454 (2003). (PDF)

26. “Synthesis, Electronic Properties and Applications of Indium Oxide Nanowires”,
C. Li, D. Zhang, S. Han, X. Liu, T. Tang, B. Lei, Z. Liu and C. Zhou,
Annals of New York Academy of Sciences 1006, 104 – 121 (2003). (PDF)

25. “Laser Ablation Synthesis and Electronic Transport Studies of Tin Oxide Nanowires”
Z. Liu, D. Zhang, S. Han, C. Li, T. Tang, W. Jin, X. Liu, B. Lei, and C. Zhou,
Advanced Materials 15, 1754 – 1757 (2003). (https://nanolab.usc.edu/files/2018/03/87458-2c3o1ru.pdf)

24. “Synthesis and Characterization of CdO Nanoneedles”
X. Liu, C. Li, S. Han, J. Han and C. Zhou
Appl. Phys. Lett. 82, 1950 – 1952 (2003). (PDF)

23. “Polarization-Dependent Reflectivity from Dielectric Nanowires”
Y. Du, S. Han, W. Jin, C. Zhou, and A. F. J. Levi
Appl. Phys. Lett. 83, 996 – 998 (2003). (PDF)

22. “Polymer Thin-Film Transistors with High Dielectric Constant Gate Insulators ”
S. Han, X. Liu, J. Han, and C. Zhou,
Applied Physics A 77, 873 – 876 (2003). (PDF)

21. “Nanosignal Processing: Stochastic Resonance in Carbon Nanotubes That Detect Subthreshold Signals”
Y. Lee, X. Liu, B. Kosko, and C. Zhou,
Nano Letters 3, 1683 – 1686 (2003). (PDF)