Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition at high temperature due to the strain induced by thermal mismatch between the graphene and substrates, which greatly degrades the extraordinary properties of graphene. Here we show that the wrinkle formation of graphene grown on Cu substrates is strongly dependent on the crystallographic orientations. Wrinkle-free single-crystal graphene was grown on a wafer-scale twin-boundary-free single-crystal Cu(111) thin film fabricated on sapphire substrate through strain engineering. The wrinkle-free feature of graphene originated from the relatively small thermal expansion of the Cu(111) thin film substrate and the relatively strong interfacial coupl...
© 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.To explore ...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...
Herein we report a systematic study elucidating the role of H<sub>2</sub> in wafer-scale graphene sy...
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 ...
Graphene grown by chemical vapor deposition can be used as the conductive channel in metal oxide sem...
Pristine graphene depositing on metallic substrates often wrinkles when the film-substrate system un...
Pristine graphene depositing on metallic substrates often wrinkles when the film-substrate system un...
Epitaxial graphene grown on single crystal Cu(111) foils by chemical vapor deposition is found to be...
High-quality wafer-scale single-crystal monolayer graphene is achieved on sapphire substrate, by epi...
© 2022, The Author(s), under exclusive licence to Springer Nature Limited.The growth of inch-scale h...
Epitaxial graphene grown on single crystal Cu(111) foils by chemical vapor deposition is found to be...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Well-defined bundles of wrinkles are observed on the graphene-covered copper by using atomic force m...
© 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.To explore ...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...
Herein we report a systematic study elucidating the role of H<sub>2</sub> in wafer-scale graphene sy...
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 ...
Graphene grown by chemical vapor deposition can be used as the conductive channel in metal oxide sem...
Pristine graphene depositing on metallic substrates often wrinkles when the film-substrate system un...
Pristine graphene depositing on metallic substrates often wrinkles when the film-substrate system un...
Epitaxial graphene grown on single crystal Cu(111) foils by chemical vapor deposition is found to be...
High-quality wafer-scale single-crystal monolayer graphene is achieved on sapphire substrate, by epi...
© 2022, The Author(s), under exclusive licence to Springer Nature Limited.The growth of inch-scale h...
Epitaxial graphene grown on single crystal Cu(111) foils by chemical vapor deposition is found to be...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Well-defined bundles of wrinkles are observed on the graphene-covered copper by using atomic force m...
© 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.To explore ...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...
Herein we report a systematic study elucidating the role of H<sub>2</sub> in wafer-scale graphene sy...