López-Cámara, Claudia-F.; Fortugno, Paolo; Heidelmann, Markus; Wiggers, Hartmut; Schulz, Christof:
Graphene self-folding : Evolution of free-standing few-layer graphene in plasma synthesis
In: Carbon, Band 218 (2024), Artikel 118732
2024Artikel/Aufsatz in ZeitschriftOA Hybrid
MaschinenbauFakultät für Ingenieurwissenschaften » Maschinenbau und Verfahrenstechnik » Institut für Energie- und Material-Prozesse (EMPI) » Reaktive FluideForschungszentren » Center for Nanointegration Duisburg-Essen (CENIDE) » ICAN - Interdisciplinary Center for Analytics on the Nanoscale
Damit verbunden: 1 Publikation(en)
Titel in Englisch:
Graphene self-folding : Evolution of free-standing few-layer graphene in plasma synthesis
Autor*in:
López-Cámara, Claudia-F.UDE
LSF ID
62035
Sonstiges
der Hochschule zugeordnete*r Autor*in
korrespondierende*r Autor*in
;
Fortugno, PaoloUDE
LSF ID
60235
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Heidelmann, MarkusUDE
GND
101117734X
GND
115540466
LSF ID
57567
ORCID
0000-0001-6804-514XORCID iD
ORCID
0000-0002-6153-6103ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Wiggers, HartmutUDE
GND
172637171
LSF ID
1643
ORCID
0000-0001-8487-9937ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Schulz, ChristofUDE
GND
1148037985
LSF ID
48807
ORCID
0000-0002-6879-4826ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
Erscheinungsjahr:
2024
Open Access?:
OA Hybrid
Web of Science ID
Scopus ID
Sprache des Textes:
Englisch
Schlagwort, Thema:
Gas-phase synthesis ; Graphene ; Graphene folding ; Plasma synthesis
Ressourcentyp:
Text

Abstract in Englisch:

Substrate and catalyst free gas-phase plasma synthesis of freestanding few-layer graphene (FLG) flakes leads to crumpled FLG structures. In this paper, we elucidate a folding-based mechanism and structure-formation process in accordance with literature on the stability of graphene sheets. Transmission electron microscopy is applied to thermophoretically-sampled FLG at various distances from the plasma zone. Single-layer and few-layer graphene were observed, and a morphology pattern evolution could be discerned. A conceptual model of graphene formation and growth is derived, starting from initial rounded single-layer graphene of a few hundred nanometer in diameter to, eventually, self-folded and strongly crumpled FLG.