Precise catalyst production for carbon nanotube synthesis with targeted structure enrichment


Type
Article
Change log
Abstract

jats:pThe direct growth of single-walled carbon nanotubes (SWCNTs) with a narrow distribution of diameter or chirality remains elusive despite significant benefits in properties and applications. Nanoparticle catalysts are vital for SWCNT synthesis, but how to precisely manipulate their chemistry, size, concentration, and deposition remains difficult, especially within a continuous production process from the gas phase. Here, we demonstrate the preparation of W6Co7 alloyed nanoparticle catalysts with precisely tunable stoichiometry using electrospray, which remain solid state during SWCNT growth. We also demonstrate continuous production of liquid iron nanoparticles with in-line size selection. With the precise size manipulation of catalysts in the range of 1–5 nm, and a nearly monodisperse distribution (σg < 1.2), an excellent size selection of SWCNTs can be achieved. All of the presented techniques show great potential to facilitate the realization of single-chirality SWCNTs production.</jats:p>

Description
Keywords
carbon nanotube, catalyst, alloy, nanoparticle, electrospray
Journal Title
Catalysts
Conference Name
Journal ISSN
2073-4344
2073-4344
Volume Title
10
Publisher
MDPI AG
Rights
All rights reserved
Sponsorship
EPSRC (EP/M015211/1)
Engineering and Physical Sciences Research Council (EP/M015211/1)
Engineering and Physical Sciences Research Council (EP/P030467/1)