Article
Publicly Available
Nonequilibrium processes for generating silicon nanostructures in single-crystalline silicon
-
P. Sen
Published/Copyright:
January 1, 2009
Published Online: 2009-01-01
Published in Print: 2002-01-01
© 2013 Walter de Gruyter GmbH, Berlin/Boston
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Articles in the same Issue
- Nanostructured advanced materials. Perspectives and directions
- Sonochemistry as a tool for preparation of porous metal oxides
- Structural variations in nanocrystalline nickel films
- Synthesis of monodispersed model catalysts using softlanding cluster deposition
- Nanophase materials by a novel microwave-hydrothermal process
- Nanotubes of the disulfides of groups 4 and 5 metals
- Morphology of nanostructured materials
- Organometallic precursor route to carbon nanotubes
- Mesoscale organization of metal nanocrystals
- Structure and dynamics of monolayers on planar and cluster surfaces
- Self-assembled molecular films of tetraamino metal (Co, Cu, Fe) phthalocyanines on gold and silver. Electrochemical and spectroscopic characterization
- Assembling nanoparticles and biomacromolecules using electrostatic interactions
- Nonequilibrium processes for generating silicon nanostructures in single-crystalline silicon
- Solvothermal routes to capped oxide and chalcogenide nanoparticles
- Formation of interfacial phases in the epitaxial growth of Sb on Si(111)-7 ¥ 7 reconstructed surface
- Stars and stripes. Nanoscale misfit dislocation patterns on surfaces
- Some properties of spherical and rod-shaped semiconductor and metal nanocrystals
- Photoinduced transformations in semiconductormetal nanocomposite assemblies
- Mesoscopic domains of cobalt nanocrystals
- Electrochemical tuning and mechanical resilience of single-wall carbon nanotubes
- Photochemistry of chromophore-functionalized gold nanoparticles
- Substrate temperature dependence of electrical conduction in nanocrystalline CdTe:TiO2 sputtered films
- Sensors and sensor arrays based on conjugated polymers and carbon nanotubes
- Functional nanoparticle architectures for sensoric, optoelectronic, and bioelectronic applications