Large area, highly uniform, vertically aligned carbon nanofibres (VACNF) have been grown between 250-450°C using a high density, low frequency, inductively coupled plasma source in an Ar/H2/CH4 discharge. The dynamic growth process is monitored using an in-situ, high resolution optical emission spectroscope. The growth of VACNFs is carried out on lightly doped silicon (100) substrates, which have been predeposited with nanometer layered Ni/Fe/Mn catalysts. The morphology, crystalline structure and chemical states of the VACNFs are found to have a strong dependence on the growth conditions, in particular on the applied substrate bias and pretreatment of the catalysts. The field emission SEM shows that the CNFs grown with externally applied b...
[[abstract]]We have studied the effect of the thickness of catalytic Ni film for the growth of verti...
The synthesis of vertically aligned carbon nanofibers (VACNFs) by direct current plasma enhanced che...
Carbon nanotubes and nanofibres have attracted attention in recent years as new materials with a num...
Vertically aligned carbon nanofibres were grown at temperatures as low as 120degreesC by plasma-enha...
Carbon nanotubes and nanofibres are typically synthesised under substrate temperatures above 600°C. ...
Large area, highly uniform vertically aligned carbon nanotips (VACNTP) and other nanostructures have...
Carbon nanofibres (CNFs) of controlled diameter and length were grown on different metal substrates ...
Carbon nanofibres (CNFs) of controlled diameter and length were grown on different metal substrates ...
Isolated vertically aligned carbon nanofibers (VACNFs) have been grown using dc plasma-enhanced chem...
[[abstract]]A plasma-enhanced chemical-vapor deposition process was employed to synthesize carbon na...
Most carbon nanofibers (CNFs) are grown at temperatures higher than 700 °C with a chemical vapor dep...
[[abstract]]A plasma-enhanced chemical-vapor deposition process was employed to synthesize carbon na...
The characteristics of carbon nanofibers (CNFs) grown, using direct current plasma enhanced chemical...
[[abstract]]A plasma-enhanced chemical-vapor deposition process was employed to synthesize carbon na...
[[abstract]]We have studied the effect of the thickness of catalytic Ni film for the growth of verti...
[[abstract]]We have studied the effect of the thickness of catalytic Ni film for the growth of verti...
The synthesis of vertically aligned carbon nanofibers (VACNFs) by direct current plasma enhanced che...
Carbon nanotubes and nanofibres have attracted attention in recent years as new materials with a num...
Vertically aligned carbon nanofibres were grown at temperatures as low as 120degreesC by plasma-enha...
Carbon nanotubes and nanofibres are typically synthesised under substrate temperatures above 600°C. ...
Large area, highly uniform vertically aligned carbon nanotips (VACNTP) and other nanostructures have...
Carbon nanofibres (CNFs) of controlled diameter and length were grown on different metal substrates ...
Carbon nanofibres (CNFs) of controlled diameter and length were grown on different metal substrates ...
Isolated vertically aligned carbon nanofibers (VACNFs) have been grown using dc plasma-enhanced chem...
[[abstract]]A plasma-enhanced chemical-vapor deposition process was employed to synthesize carbon na...
Most carbon nanofibers (CNFs) are grown at temperatures higher than 700 °C with a chemical vapor dep...
[[abstract]]A plasma-enhanced chemical-vapor deposition process was employed to synthesize carbon na...
The characteristics of carbon nanofibers (CNFs) grown, using direct current plasma enhanced chemical...
[[abstract]]A plasma-enhanced chemical-vapor deposition process was employed to synthesize carbon na...
[[abstract]]We have studied the effect of the thickness of catalytic Ni film for the growth of verti...
[[abstract]]We have studied the effect of the thickness of catalytic Ni film for the growth of verti...
The synthesis of vertically aligned carbon nanofibers (VACNFs) by direct current plasma enhanced che...
Carbon nanotubes and nanofibres have attracted attention in recent years as new materials with a num...