Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without further damage are most important requirements for the practical use of graphene. Here we report the growth of wrinkle-free, strictly uniform monolayer graphene films by chemical vapor deposition on a platinum (Pt) substrate with texture-controlled giant grains and the thermal-assisted transfer of large-scale patterned graphene onto arbitrary substrates. The designed Pt surfaces with limited numbers of grain boundaries and improved surface perfectness as well as small thermal expansion coefficient difference to graphene provide a venue for uniform growth of monolayer graphene with wrinkle-free characteristic. The thermal-assisted transfer techni...
We report the first demonstration of the growth of giant graphene domains on platinum (Pt), which re...
We explored a support-free method for transferring large area graphene films grown by chemical vapor...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without fur...
Large single-crystal graphene is highly desired and important for the applications of graphene in el...
Large single-crystal graphene is highly desired and important for the applications of graphene in el...
Reproducible dry and wet transfer techniques were developed to improve the transfer of large-area mo...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
We explored a support-free method for transferring large area graphene films grown by chemical vapor...
Reliable transfer techniques are critical for the integration of 2D materials with arbitrary substra...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
Reliable transfer techniques are critical for the integration of 2D materials with arbitrary substra...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
We report the first demonstration of the growth of giant graphene domains on platinum (Pt), which re...
We report the first demonstration of the growth of giant graphene domains on platinum (Pt), which re...
We explored a support-free method for transferring large area graphene films grown by chemical vapor...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Growth of large-scale patterned, wrinkle-free graphene and the gentle transfer technique without fur...
Large single-crystal graphene is highly desired and important for the applications of graphene in el...
Large single-crystal graphene is highly desired and important for the applications of graphene in el...
Reproducible dry and wet transfer techniques were developed to improve the transfer of large-area mo...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
We explored a support-free method for transferring large area graphene films grown by chemical vapor...
Reliable transfer techniques are critical for the integration of 2D materials with arbitrary substra...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
Reliable transfer techniques are critical for the integration of 2D materials with arbitrary substra...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
Wrinkles are ubiquitous for graphene films grown on various substrates by chemical vapor deposition ...
We report the first demonstration of the growth of giant graphene domains on platinum (Pt), which re...
We report the first demonstration of the growth of giant graphene domains on platinum (Pt), which re...
We explored a support-free method for transferring large area graphene films grown by chemical vapor...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...