Controlled growth of high-quality graphene is still the bottleneck of practical applications. The widely used chemical vapour deposition process generally suffers from an uncontrollable carbon precipitation effect that leads to inhomogeneous growth and strong correlation to the growth conditions. Here we report the rational design of a binary metal alloy that effectively suppresses the carbon precipitation process and activates a self-limited growth mechanism for homogeneous monolayer graphene. As demonstrated by an Ni-Mo alloy, the designed binary alloy contains an active catalyst component for carbon source decomposition and graphene growth and a black hole counterpart for trapping the dissolved carbons and forming stable metal carbides. ...
In this work we present a low-cost, scalable technique to fabricate few-layer graphene films via amb...
Low-temperature (∼450 °C), scalable chemical vapor deposition of predominantly monolayer (74%) graph...
Following the game-changing high-pressure CO (HiPco) process that established the first facile route...
The employment of Ni-Mo films has recently been shown to yield strictly homogeneous single-layer gra...
Chemical vapour deposition (CVD) is the most promising graphene synthesis route for film and electro...
Graphene is a layer of sp2 hybridized carbon atoms with a thickness of only one atom. It possesses v...
We investigated a bilayer catalyst system consisting of polycrystalline Ni and W films for growing m...
A bimetallic CoCu alloy thin-film catalyst is developed that enables the growth of uniform, high-qua...
It has been generally accepted that iron-group metals (iron, cobalt, nickel) consistently show the h...
It has been generally accepted that iron-group metals (iron, cobalt, nickel) consistently show the h...
Enormous characteristics exhibited by two-dimensional carbon-based nanomaterial, graphene attract cu...
Wafer-scale single-crystalline graphene monolayers are highly sought after as an ideal platform for ...
bS Supporting Information Scalable, economical growth is a key requirement to utilize theunique prop...
The self-limited chemical vapor deposition of uniform single-layer graphene on Cu foils generated si...
How does your graphene grow? In situ X-ray photoelectron spectroscopy and X-ray diffraction measurem...
In this work we present a low-cost, scalable technique to fabricate few-layer graphene films via amb...
Low-temperature (∼450 °C), scalable chemical vapor deposition of predominantly monolayer (74%) graph...
Following the game-changing high-pressure CO (HiPco) process that established the first facile route...
The employment of Ni-Mo films has recently been shown to yield strictly homogeneous single-layer gra...
Chemical vapour deposition (CVD) is the most promising graphene synthesis route for film and electro...
Graphene is a layer of sp2 hybridized carbon atoms with a thickness of only one atom. It possesses v...
We investigated a bilayer catalyst system consisting of polycrystalline Ni and W films for growing m...
A bimetallic CoCu alloy thin-film catalyst is developed that enables the growth of uniform, high-qua...
It has been generally accepted that iron-group metals (iron, cobalt, nickel) consistently show the h...
It has been generally accepted that iron-group metals (iron, cobalt, nickel) consistently show the h...
Enormous characteristics exhibited by two-dimensional carbon-based nanomaterial, graphene attract cu...
Wafer-scale single-crystalline graphene monolayers are highly sought after as an ideal platform for ...
bS Supporting Information Scalable, economical growth is a key requirement to utilize theunique prop...
The self-limited chemical vapor deposition of uniform single-layer graphene on Cu foils generated si...
How does your graphene grow? In situ X-ray photoelectron spectroscopy and X-ray diffraction measurem...
In this work we present a low-cost, scalable technique to fabricate few-layer graphene films via amb...
Low-temperature (∼450 °C), scalable chemical vapor deposition of predominantly monolayer (74%) graph...
Following the game-changing high-pressure CO (HiPco) process that established the first facile route...