Nanostructures Departement

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International
NANOCOMP EU5: Large scale synthesis of carbon nanotubes and their composite materials
HPRN-CT-2000-00037

Facultés Universitaires Notre Dame de la Paix (FUNDP), Namur, Belgium
Laboratoire de Physique du Solide, Philippe Lambin: Theoretical calculations, modelling the structure of coiled nanotubes
Laboratoire de Physique du Solide, Jean-Pol Vigneron: Photonic crystal type materials. Investigation with physical methods and modelling
Laboratoire de Resonance Magnetique Nucléaire, János B.Nagy: STM, AFM and TEM investigation of SWNT samples

Fhg-Institut für Integrierte Schaltungen, Erlangen, Germany
C. Schneider et al.: Ferroelectric layers

Max Born Institut für Nichtlineare Optikund Kurzzeitspektroskopie, Berlin, Germany
Rudolf Ehlich: Nanotubes from fullerene decomposition

Babes-Bolyai University, Cluj (Kolozsvár), Romania
S. Darabont: Nanotube growth
Universidade do Minho, Campus de Azurem, Portugal
Carlos A. Bernardo: Carbon nanotube reinforced composite materials

Institute of Biochemical Physics, Russian Academy of Sciences, Moscow, Russia
Leonid A. Chernozatonskii: Theoretical calculations for nanotube branches

Institute of Inorganic Chemistry, Novosibirsk, Russia
A. V. Okotrub: Investigation of functionalized nanotubes

EMAT, Univ. Antwerpen, Netherlands
G. Van Tendeloo: TEM investigation of SWNT samples

Energy Photovoltaics, Inc., USA
Z. Kiss, M. Akhtar: Hydrogen storage in nanotubes
National
KFKI RMKI
A. Kocsonya: XRF invstigation of the compositionof carbon nanostructures
A. Manuaba: SiC, AFM topography
F. Pászti: TEM investigations of SiOx prepared by O+ implantation of He+ and N+ ion implanted SiC and Si

KFKI SzFKI
L. Cser: AFM Topography of Ti on glass substrate
J. Beregi: XRD orientation of YAl3(BO4)3 crystal

ELTE Department of Biological Physics
J. Kürti: Theoretical calculations for carbon nanotubes

ELTE Department of General Physics
Gy. Szenes: AFM topography of 370 MeV irradiatedInSb; TEM of high energy irradiated TeO2

ELTE Department of Inorganic and Analytical Chemistry & KFKI AEKI
T. Braun and H. Rausch: XRD of mechanochemicallyfluorinated fullerene samples

ELTE Department of Theoretical Chemistry
P. Surján: Theoretical calculations for carbon nanotubes

Department of Environmental Chemistry, University of Szeged
Z. Kónya, I. Kiricsi: Production and modification of carbon nanotubes by chemical methods and their characterisation

MTA KKK
I. Bertóti: XPS of functionalized nanotubes

MTA KKK IKI
A. Beck and A. Horváth: TEM of Au and Pd catalysts
L. Lakosi: XRD of U oxide powder

Hungarian Natural History Museum
Zs. Bálint: Photonic crystal type biological structures

Institute of Physics, Budapest University of Technology and Economics
P. Pacher: Application of time dependent Schrödinger equation animations in the teaching of quantum mechanics

Accusealed Kft
S. Kulcsár: Hydrogen storage in nanotubes

Last updated: Nov 27, 2003 by Géza I. Márk , mark@sunserv.kfki.hu
This page was accessed  times since Dec 4, 2002.