High-melting point alloy catalysts have been reported to be effective for the structure-controlled growth of single-wall carbon nanotubes (SWCNTs). However, some fundamental issues remain unclear because of the complex catalytic growth environment. Here, we directly investigated the active catalytic phase of Co-W-C alloy catalyst, the growth kinetics of CNTs, and their interfacial dynamics using closed-cell environmental transmission electron microscopy at atmospheric pressure. The alloy catalyst was precisely identified as a cubic η-carbide phase that remained unchanged during the whole CNT growth process. Rotations of the catalyst nanoparticles during CNT growth were observed, implying a weak interfacial interaction and undefined orientat...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
A mechanism by which catalyst deactivation occurs during vertically aligned single-walled carbon nan...
We present atomic-scale, video-rate environmental transmission electron microscopy and in situ time-...
High???melting point alloy catalysts have been reported to be effective for the structure-controlled...
Revealing the active phase and structure of catalyst nanoparticles (NPs) is crucial for understandin...
Understanding the growth mechanism of carbon nanotubes (CNTs) has been long pursued since its discov...
The structure and phase transformation of a cobalt (Co) catalyst, during single walled carbon nanotu...
In this Letter, using density functional theory based molecular dynamics simulations, we report that...
Alloy catalysts often show superior effectiveness in the growth of carbon nanotubes/nanofibers (CNTs...
Nowadays the main challenge to fully exploit carbon nanotubes (CNTs) for potential applications cons...
Alloy catalysts often show superior effectiveness in the growth of carbon nanotubes/nanofibers (CNTs...
Carbon nanotubes (CNTs) are materials with significant potential applications due to their desirable...
International audienceIn this study, carbon nanotubes (CNTs) were formed on a high-carbon 25Cr35Ni–N...
We present a model for the process of the growth of carbon nanotubes (CNTs) obtained by chemical vap...
Vertically aligned carbon nanotubes were synthesized by plasma enhanced chemical vapor deposition us...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
A mechanism by which catalyst deactivation occurs during vertically aligned single-walled carbon nan...
We present atomic-scale, video-rate environmental transmission electron microscopy and in situ time-...
High???melting point alloy catalysts have been reported to be effective for the structure-controlled...
Revealing the active phase and structure of catalyst nanoparticles (NPs) is crucial for understandin...
Understanding the growth mechanism of carbon nanotubes (CNTs) has been long pursued since its discov...
The structure and phase transformation of a cobalt (Co) catalyst, during single walled carbon nanotu...
In this Letter, using density functional theory based molecular dynamics simulations, we report that...
Alloy catalysts often show superior effectiveness in the growth of carbon nanotubes/nanofibers (CNTs...
Nowadays the main challenge to fully exploit carbon nanotubes (CNTs) for potential applications cons...
Alloy catalysts often show superior effectiveness in the growth of carbon nanotubes/nanofibers (CNTs...
Carbon nanotubes (CNTs) are materials with significant potential applications due to their desirable...
International audienceIn this study, carbon nanotubes (CNTs) were formed on a high-carbon 25Cr35Ni–N...
We present a model for the process of the growth of carbon nanotubes (CNTs) obtained by chemical vap...
Vertically aligned carbon nanotubes were synthesized by plasma enhanced chemical vapor deposition us...
It is well-known that carbon nanotubes (CNTs) can be grown directly on the surface of stainless stee...
A mechanism by which catalyst deactivation occurs during vertically aligned single-walled carbon nan...
We present atomic-scale, video-rate environmental transmission electron microscopy and in situ time-...