- By:
- Park, Wonjung; Boebinger, Matthew G; Collins, Liam F; Puretzky, Alexander A; Ivanov, Ilia N; Geohegan, David B; Bronikowski, Michael
- Journal Name:
- ACS Omega
- Page Number:
- 40968-40980
- Volume:
- 10
- Issue Number:
- 36
- Publication Date:
- September 29, 2025
- View DOI Listing:
- https://doi.org/10.1021/acsomega.5c03084
Abstract
We report new findings from studies of a novel technique to augment the growth of CNTs. In this method, the catalytic metals used for CNT growth are combined with high-melting-point heavy refractory metals, which serve to stabilize the metal catalyst nanoparticles, from which the CNTs nucleate and grow. Our study investigates the combination of an iron catalyst with tungsten and osmium refractory stabilizers. We find that both tungsten and osmium enhance the lifetime of the iron catalyst particles by a factor of approximately two. Tungsten stabilizer resulted in production of CNTs longer by a factor of 1.25 compared to those produced using a pure iron catalyst, while the osmium stabilizer did not significantly affect the ultimate length of the CNTs due to the decreased CNT growth rate with a combined Fe/Os catalyst. These results suggest a possible new route toward producing CNTs with lengths sufficient for materials applications.