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Nico Lovergine

Innovation Enginering
University of Salento

Publications

Peer-Reviewed Science Journals

[1] R. Rinaldi, C. Turco, N. LOVERGINE, R. Cingolani, L. Vasanelli, E. Di Fabrizio, L. Grella, M. Gentili, L. De Caro, and L. Tapfer, Free-standing ZnSe/ZnS quantum wires with high luminescence efficiency, Appl. Phys. Lett. 71, no. 26, 3770 (29 December 1997)
[2] M. Longo, N. LOVERGINE, A.M. Mancini, A. Passaseo, G. Leo, M. Mazzer, M. Berti, and A.V. Drigo, Self-organized growth of ZnTe nanoscale islands on (001)GaAs, Appl. Phys. Lett. 72, no. 3, 359 (19 January 1998).
[3] G. Leo, M. Longo, N. LOVERGINE, M. Mazzer, A.M. Mancini, M. Berti, and A.V. Drigo, Stranski-Krastanow MOVPE growth of nanoscale ZnTe islands on (001)GaAs, J. Cryst. Growth 185, 1332 (1998)
[4] R. Rinaldi, C. Turco, N. LOVERGINE, R. Cingolani, L. Vasanelli, E. Di Fabrizio, L. Grella, and M. Gentili, ZnSe/ZnS single quantum wire heterostructures emitting in the near-ultraviolet region, Phys. Low Dimen. Struct. 1-2, 199 (1998)
[5] N. LOVERGINE, M. Longo, G. Leo, M. Mazzer, A.M. Mancini, M. Berti, and A.V. Drigo, Stranski-Krastanow self-organized growth of ZnTe nano-islands on (100)GaAs by metal-organic vapour phase epitaxy, J. Mater. Sci.: Mater. Electr. 9, 249 (June 1998)
[6] J. Spadavecchia, P. Prete, N. LOVERGINE, L. Tapfer, and R. Rella, Au nanoparticles prepared by physical method on Si and sapphire substrates for biosensor applications, J. Phys. Chem. B  Letters 109, no. 37, 17347-49 (22 September 2005)
[7] P. Paiano, P. Prete, N. LOVERGINE, and A.M. Mancini, Size and shape control of GaAs nanowires grown by metalorganic vapor phase epitaxy using tertiarybutylarsine, J. Appl. Phys. 100, 094305 (1 November 2006)
[8] P. Paiano, P. Prete, E. Speiser, N. LOVERGINE, W. Richter, L. Tapfer, and A.M. Mancini, GaAs nanowires grown by Au-catalyst-assisted MOVPE using tertiarybutylarsine as group-V precursor, J. Cryst. Growth 298C, 620-624 (2007)
[9] P. Prete, N. LOVERGINE, and L. Tapfer, Nanostructure size evolution during Au-catalysed growth by carbo-thermal evaporation of well-aligned ZnO nanowires on (100)Si, Appl. Phys. A 88, no. 1, 21-26 (July 2007)
[10] E. Piscopiello, L. Tapfer, M. Vittori Antisari, P. Paiano, P. Prete, and N. LOVERGINE, Formation of epitaxial Au nanoislands on (100)Si, Phys. Rev. B 78, no. 3, 035305, 7 pages (15 July 2008)
[11] P. Prete, F. Marzo, P. Paiano, N. LOVERGINE, G. Salviati, L. Lazzarini, and T. Sekiguchi, Luminescence of GaAs/AlGaAs core-shell nanowires grown by MOVPE using tertiarybutyl-arsine, J. Cryst. Growth 310, n. 23, 5114-5118 (15 November 2008)
[12] A. Lorusso, V. Nassisi, G. Congedo, N. LOVERGINE, L. Velardi, and P. Prete, Pulsed plasma ion source to create Si nanocrystals in SiO2 substrates, Appl. Surf. Sci. 255, no. 10, 5401-5404 (1 March 2009)
[13] G. Chen, E.M. Gallo, J. Burger, B. Nabet, A. Cola, P. Prete, N. LOVERGINE, and J.E. Spanier, On direct-writing methods for electrically contacting GaAs and Ge nanowire devices, Appl. Phys. Lett. 96, n. 22, Article n. 223107, p. 1-3 (31 May 2010).
[14] B. Buick, E. Speiser, P. Prete, P. Paiano, N. LOVERGINE, and W. Richter, Single AlxGa1-xAs nanowires probed by Raman spectroscopy, Phys. Status Sol. (b) 247, No. 8, pp. 2027–2032 (2010).
[15] Z. Gu, P. Prete, N. LOVERGINE, and B. Nabet , On optical properties of GaAs/AlGaAs core-shell periodic nanowire arrays, J. Appl. Phys. 109, Article no. 064314, 6 pages (2011).
[16] A. Persano, B. Nabet, A. Taurino, P. Prete, N. LOVERGINE, and A. Cola, Polarization anisotropy of individual core/shell GaAs/AlGaAs nanowires by photocurrent spectroscopy, Appl. Phys. Lett. 98, Article no. 153106, 3 pages (2011).

Book Chapters

[1] P. Prete, N. LOVERGINE, MOVPE self-assembly and physical properties of free-standing III-V nanowires, in: NANOWIRES (INTECH, Vukovar, Croatia), Editor: P. Prete, Chapter 3, p. 51-78, (March 2010). ISBN: 978-953-7619-79-4.
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Member since June 17, 2011
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