Graphene, a two-dimensional material, can be grown on a metal substrate using chemical vapor deposition - this growth process is notably influenced by the crystal orientation and the roughness of the substrate surface. We prepared epitaxial Cu(111) films on sapphire substrates using thermal evaporation at various substrate temperatures and studied their crystal orientation and roughness. The well crystallized Cu(111) film with a smooth surface was obtained when the substrate was maintained at 473 K during the deposition. High quality graphene with few intrinsic defects was grown on this Cu film
Single-crystal copper films on sapphire have recently been reported upon in relation to graphene gro...
We report on an approach to bring together single crystal metal catalyst preparation and graphene gr...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...
<div>Graphene, a two-dimensional material, can be grown on a metal substrate using chemical vapor de...
We propose a novel growth technique, in which graphene is synthesized on capped Cu thin films deposi...
Chemical vapor deposition (CVD) is widely considered to be the most economically viable method to pr...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...
Chemical vapor deposition (CVD) is widely considered to be the most economically viable method to pr...
Advances in synthesis are imperative if graphene is to fulfill its scientific and technological pote...
We present a simple approach to improving the quality of CVD grown graphene, exploiting a Cu(111) fo...
We present a simple approach to improving the quality of CVD grown graphene, exploiting a Cu(111) fo...
High-quality wafer-scale single-crystal monolayer graphene is achieved on sapphire substrate, by epi...
Single crystal metal films on insulating substrates are attractive for microelectronics and other ap...
There exist a small lattice mismatch between Cu(111) and graphene, which makes Cu(111) the preferred...
Understanding the influence that copper substrate surface symmetry and oxygen impurities have on the...
Single-crystal copper films on sapphire have recently been reported upon in relation to graphene gro...
We report on an approach to bring together single crystal metal catalyst preparation and graphene gr...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...
<div>Graphene, a two-dimensional material, can be grown on a metal substrate using chemical vapor de...
We propose a novel growth technique, in which graphene is synthesized on capped Cu thin films deposi...
Chemical vapor deposition (CVD) is widely considered to be the most economically viable method to pr...
Producing ultra-flat crack-free single-layer high-quality graphene over large areas has remained the...
Chemical vapor deposition (CVD) is widely considered to be the most economically viable method to pr...
Advances in synthesis are imperative if graphene is to fulfill its scientific and technological pote...
We present a simple approach to improving the quality of CVD grown graphene, exploiting a Cu(111) fo...
We present a simple approach to improving the quality of CVD grown graphene, exploiting a Cu(111) fo...
High-quality wafer-scale single-crystal monolayer graphene is achieved on sapphire substrate, by epi...
Single crystal metal films on insulating substrates are attractive for microelectronics and other ap...
There exist a small lattice mismatch between Cu(111) and graphene, which makes Cu(111) the preferred...
Understanding the influence that copper substrate surface symmetry and oxygen impurities have on the...
Single-crystal copper films on sapphire have recently been reported upon in relation to graphene gro...
We report on an approach to bring together single crystal metal catalyst preparation and graphene gr...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...