In this work, the influence of the cobalt phase on the growth of carbon nanotubes by the catalytic chemical vapour deposition of CH4 with catalysts containing Co, Mo and Mg is investigated. To this end, the catalytic behaviour of physically mixed CoO/MgO+MgMoO4 and CoMoO4+MgMoO4 is studied. The results obtained show that CoMoO4+MgMoO4 allows for the attainment of the highest CNT yield (2407 wt % against 1296 wt %). Its higher activity is ascribed to the greater formation of active sites that, in light of current assessments, are constituted by metallic cobalt adjacent to Mo2C, and the huge exfoliation of the catalyst, which contributes towards enhancing their exposure
In this paper the effect of cobalt (Co) catalyst on the growth of carbon nanotubes (CNTs) was studie...
Carbon nanotubes (CNTs) were synthesized in the temperature range of 500-700 degrees C over cobalt (...
The synthesis of single wall carbon nanotubes (SWNTs) by the catalyticdisproportionation of carbon m...
In this work, the influence of the cobalt phase on the growth of carbon nanotubes by the catalytic c...
The kinetics of carbon nanotube (CNT) synthesis by decomposition of CH4 over Mo/Co/MgO and Co/MgO ca...
An industrially applicable cobalt-based catalyst was optimized for the production of multiwalled car...
Carbon nanotubes were synthesized at 600-800°C by a typical CVD method using Co/MgO and Co-Mo/MgO, a...
An industrially applicable cobalt-based catalyst was optimized for the production of multiwalled car...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Carbon nanotubes (CNT) were synthesized from a H2–CH4 mixture with W/Co–MgO catalyst by a catalytic ...
A synergistic effect between Co and Mo has been observed. When both metallic species are simultaneou...
ABSTRACT: An extensive study of Higher Alcohol Synthesis (HAS) from synthesis gas using cobalt (Co) ...
In this paper the effect of cobalt (Co) catalyst on the growth of carbon nanotubes (CNTs) was studie...
Carbon nanotubes (CNTs) were synthesized in the temperature range of 500-700 degrees C over cobalt (...
The synthesis of single wall carbon nanotubes (SWNTs) by the catalyticdisproportionation of carbon m...
In this work, the influence of the cobalt phase on the growth of carbon nanotubes by the catalytic c...
The kinetics of carbon nanotube (CNT) synthesis by decomposition of CH4 over Mo/Co/MgO and Co/MgO ca...
An industrially applicable cobalt-based catalyst was optimized for the production of multiwalled car...
Carbon nanotubes were synthesized at 600-800°C by a typical CVD method using Co/MgO and Co-Mo/MgO, a...
An industrially applicable cobalt-based catalyst was optimized for the production of multiwalled car...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Decomposition of methane into carbon nanotubes over CoO catalysts supported on various catalyst supp...
Carbon nanotubes (CNT) were synthesized from a H2–CH4 mixture with W/Co–MgO catalyst by a catalytic ...
A synergistic effect between Co and Mo has been observed. When both metallic species are simultaneou...
ABSTRACT: An extensive study of Higher Alcohol Synthesis (HAS) from synthesis gas using cobalt (Co) ...
In this paper the effect of cobalt (Co) catalyst on the growth of carbon nanotubes (CNTs) was studie...
Carbon nanotubes (CNTs) were synthesized in the temperature range of 500-700 degrees C over cobalt (...
The synthesis of single wall carbon nanotubes (SWNTs) by the catalyticdisproportionation of carbon m...