AlN Nanowall Structures Grown on Si (111) Substrate by Molecular Beam Epitaxy
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/content/pdf/10.1186/s11671-015-1178-7.pdf
Reference26 articles.
1. Schenk HPD, Kaiser U, Kipshidze GD, Fissel A, Kraublich J, Hobert H, Schulze J, Richter W (1999) Growth of atomically smooth AlN films with a 5:4 coincidence interface on Si (111) by MBE. Mater Sci Eng B 59:84
2. Kuo SY, Chen WC, Yang JF, Hsiao CN, Lai FI (2015) Morphology evolution of nano-structured InN grown by MOMBE. J Mater Sci Mater Electron 26:4285
3. Lei W, Liu D, Zhang J, Zhu P, Cui Q, Zou G (2009) Direct synthesis, growth mechanism, and optical properties of 3D AlN nanostructures with urchin shapes. Cryst Growth Des 9:1489
4. Kesaria M, Shetty S, Shivaprasad SM (2011) Evidence for dislocation induced spontaneous formation of GaN nanowalls and nanocolumns on bare C-plane sapphire. Cryst Growth Des 11:4900
5. Rodriguez PEDS, Kumar P, Gomez VJ, Alvi NH, Manuel JM, Morales FM, Jimenez JJ, Garcia R, Calleja E, Notzel R (2013) Spontaneous formation of InGaN nanowall network directly on Si. Appl Phys Lett 102:173105
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