Thomas Laude's pages - Science de la matière et de l'énergie



nano-database

Articles should be at lowest level of categories. If you need a new category, please email me. Proceedings should not be registered. Books are welcomed.

Present category:

nanostructures/growth mechanisms/thermo-physical considerations/

Lower categories:

No lower category

TittleFirst author JournalRef. PageYear
173Single-walled carbon NT produced by cw CO2-laser ablation: study of parameters important for their formationmunoze.Appl. Phys. A701452000
295Mechanism of carbon NT formation in the arc dischargegamalye. g.Phys. Rev. B52, 320831995
162Organisation of carbon and BN layers in mixed nanoparticles and NT synthesized by arc dishargesuenagak.Appl. Phys. A683011999
169Self-Assembly of tubular fullerenesguot.J. Phys. Chem.99106941995
257multi wall carbon NT: self-organisation and inhibition of step-flow growth kineticslouchevo.J. of Appl. Phys.?2000
158Surface diffusion growth and stability mechanism of BN NT produced by laser beam heating under superhigh pressureslouchevo. l.Appl. Phys. Let.71, 2435221997
165Growth model for carbon nanotubesijimas.Phys. Rev. Let.69, 2131001992
172Diagnostics of laser-produced plume under carbon NT growth conditionsarepallis.Appl. Phys. A701250000
287Non-uniformity of temperatures along nanotubes in hot reactors and axial growthLaudeThomasEuropeen Journal of Applied Physics281732004
161Coupling of kinetic and transport phenomena in self-organization of C-B-N nanotube growth into sandwich structureslouchevo. a.Appl. Phys. Let.77, 1014462000
168Morphology, structure, and growth of nanoparticles produced in a carbon arcscottj. h. j.Phys. Rev. B52, 17125641995
175Formation of cluster-assembled carbon nano-foam by high-repetition-rate laser ablationrodeto fillAppl. Phys. A701352000
157Filamentous growth of carbon through benzene decompositionoberlina.J. of cryst. Growth323351976
164Pentagons, heptagons and negative curvature in graphite microtubule growthijimas.Nature3567761992
171Dynamics of single-wall carbon NT synthesis by laser vaporizationpuretzkya.Appl. Phys. A701532000
263Growth model for carbon nanotubesijimas.Phys. Rev. Let.69, 2131001992
160multi wall carbon NT: self-organisation and inhibition of step-flow growth kineticslouchevo.J. of Appl. Phys.?2000
167Mechanism of carbon NT formation in the arc dischargegamalye. g.Phys. Rev. B52, 320831995
174Single walled carbon NT formation with a continuous CO2-laser: experiments and theorygamalye.Appl. Phys. A701612000
297Single-walled carbon NT produced by cw CO2-laser ablation: study of parameters important for their formationmunoze.Appl. Phys. A701452000
163Formation of carbon nanofibersendom.J. Phys. Chem.9669411992
170Controlling SWNT diameters with variation in laser pule powerdillona.Chem. Phys. Let.316132000
262NT self-organization: Formation by step-flow growthlouchevo. a.Appl. Phys. Let.74, 21941999
159NT self-organization: Formation by step-flow growthlouchevo. a.Appl. Phys. Let.74, 21941999
166Model of carbon NT growth through chemical vapor depositionsinnotts. b.Chem. Phys. Let.315251999

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The material present here is copyrighted. Key-words: nanotechnology, science, nanotubes.

Birth of the site: August 1999!


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