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The role of the catalytic particle in the growth of carbon nanotubes by plasma enhanced chemical vapor deposition
National licenceAmerican Institute of Physics | 2004| -
Effects of catalyst film thickness on plasma-enhanced carbon nanotube growth
National licenceAmerican Institute of Physics | 2005| -
Transuranic Hybrid Materials: Crystallographic and Computational Metrics of Supramolecular Assembly
American Chemical Society | 2017| -
Study of structural, electrical, and dielectric properties of phosphate-borate glasses and glass-ceramics
Online Contents | 2016|Contributors: Graça, M. P. F, Valente, M. A -
Bottom-up engineering of the surface roughness of nanostructured cubic zirconia to control cell adhesion
National licencePaperIOP Institute of Physics | 2012| -
Influence of energy structure on recombination lifetime in GaAs/AlGaAs multilayers
Online Contents | 2016|Contributors: Tito, M. A -
Stored energies in electric and magnetic current densities for small antennas
Online Contents | 2015|Contributors: Gustafsson, M -
Publisher’s Note: “Effects of catalyst film thickness on plasma-enhanced carbon nanotube growth” [J. Appl. Phys. 98, 034308 (2005)]
Free accessAmerican Institute of Physics | 2006| -
Growth process conditions of vertically aligned carbon nanotubes using plasma enhanced chemical vapor deposition
National licenceAmerican Institute of Physics | 2001| -
Spin waves in quasiperiodic magnonic crystal arrays of metallic nanostripes
PaperIOP Institute of Physics | 2018| -
Electro-magneto-hydrodynamic flow of couple stress nanofluids in micro-peristaltic channel with slip and convective conditions
Free accessOnline Contents | 2021| -
Batch fabrication of metal oxide sensors on micro-hotplates
National licenceIOP Institute of Physics | 2008|
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