Epitaxial graphene grown on single crystal Cu(111) foils by chemical vapor deposition is found to be free of wrinkles and under biaxial compressive strain. The compressive strain in the epitaxial regions (0.25-0.40%) is higher than regions where the graphene is not epitaxial with the underlying surface (0.20-0.25%). This orientation-dependent strain relaxation is through the loss of local adhesion and the generation of graphene wrinkles. Density functional theory calculations suggest a large frictional force between the epitaxial graphene and the Cu(111) substrate, and this is therefore an energy barrier to the formation of wrinkles in the graphene. Enhanced chemical reactivity is found in epitaxial graphene on Cu(111) foils as compared to ...
© 2022 Wiley-VCH GmbH.A single-crystal graphene film grown on a Cu(111) foil by chemical vapor depos...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...
Epitaxial graphene grown on single crystal Cu(111) foils by chemical vapor deposition is found to be...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
Polycrystalline metal substrates such as copper (Cu) have been intensively used to grow graphene in ...
Polycrystalline metal substrates such as copper (Cu) have been intensively used to grow graphene in ...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
A single-crystal graphene film grown on a Cu(111) foil by chemical vapor deposition (CVD) has ribbon...
Understanding of the continuity and the microscopic structure of as-grown graphene on Cu foils throu...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...
© 2022 Wiley-VCH GmbH.A single-crystal graphene film grown on a Cu(111) foil by chemical vapor depos...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...
Epitaxial graphene grown on single crystal Cu(111) foils by chemical vapor deposition is found to be...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
Polycrystalline metal substrates such as copper (Cu) have been intensively used to grow graphene in ...
Polycrystalline metal substrates such as copper (Cu) have been intensively used to grow graphene in ...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
A single-crystal graphene film grown on a Cu(111) foil by chemical vapor deposition (CVD) has ribbon...
Understanding of the continuity and the microscopic structure of as-grown graphene on Cu foils throu...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...
© 2022 Wiley-VCH GmbH.A single-crystal graphene film grown on a Cu(111) foil by chemical vapor depos...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...