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A structure and activity relationship for single-walled carbon nanotube growth confirmed by in situ observations and modeling

  • Hsin Yun Chao
  • , Hua Jiang
  • , Francisco Ospina-Acevedo
  • , Perla B. Balbuena
  • , Esko I. Kauppinen
  • , John Cumings
  • , Renu Sharma*
  • *Tämän työn vastaava kirjoittaja
  • University of Maryland, College Park
  • National Institute of Standards and Technology
  • Texas A&M University

Tutkimustuotos: LehtiartikkeliArticleScientificvertaisarvioitu

15 Sitaatiot (Scopus)
147 Lataukset (Pure)

Abstrakti

The structure and phase transformation of a cobalt (Co) catalyst, during single walled carbon nanotube (SWCNT) growth, is elucidated for inactive, active and deactivated nanoparticles by in situ imaging using an environmental transmission electron microscope. During nanotube growth, the structure was analyzed using Miller indices to determine the types of planes that favor anchoring or liftoff of nanotubes from the Co catalyst. Density functional theory was further applied to model the catalyst interactions to compare the work of adhesion of the catalyst's faceted planes to understand the interactions of different Miller planes with the graphene structure. Through in-depth studies of multiple distinct Co nanoparticles, we established a dominant nanoparticle phase for SWCNT growth. In addition, we identified the preferred lattice planes and a threshold for work of adhesion to allow the anchoring and liftoff of SWCNTs.

AlkuperäiskieliEnglanti
Sivut21923-21931
Sivumäärä9
JulkaisuNanoscale
Vuosikerta12
Numero42
DOI - pysyväislinkit
TilaJulkaistu - 14 marrask. 2020
OKM-julkaisutyyppiA1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä

Rahoitus

H. C. acknowledges support under the Cooperative Research Agreement between the University of Maryland and the National Institute of Standards and Technology Physical Measurement Laboratory, award 70NANB14H209, through the University of Maryland.

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