The effect of graphene coating on the growth of grains on bulk copper film was studied. When methane gas is catalytically decomposed on the surface of copper, and a carbon–copper solid solution is formed at high temperature, precipitated carbon on the copper surface forms graphene during rapid cooling through strong sp2 covalent bonding. The graphene layer can prevent the growth of grains by suppressing the diffusion of copper atoms on the surface, even after continuous heat treatment at high temperatures. The actual size of the copper grains was analyzed in terms of repetitive high-temperature heat treatment processes, and the grain growth process was simulated by using thermodynamic data, such as surface migration energy and the bin...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
The ability to protect refined metals from reactive environments is vital to many industrial and aca...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
The effect of graphene coating on the growth of grains on bulk copper film was studied. When methane...
Thin metal films can be used to catalyze the growth of nanomaterials in place of the bulk metal, whi...
During the chemical vapor deposition (CVD) growth of graphene on Cu foils, evaporation of Cu and cha...
Graphene growth on Cu foils by catalytic decomposition of methane forms predominantly single-layer g...
Commonly used techniques for cleaning copper substrates before graphene growth via chemical vapor de...
In this Letter, we found that the growth of graphene on Cu oxide foil is significantly affected by t...
Chemical vapor deposition (CVD) is the most promising method for the preparation of high-quality and...
Advances in synthesis are imperative if graphene is to fulfill its scientific and technological pote...
Graphene was synthesized on Cu foil and film by atmospheric pressure chemical vapor deposition (CVD)...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
2014-2015 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
The ability to protect refined metals from reactive environments is vital to many industrial and aca...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
The effect of graphene coating on the growth of grains on bulk copper film was studied. When methane...
Thin metal films can be used to catalyze the growth of nanomaterials in place of the bulk metal, whi...
During the chemical vapor deposition (CVD) growth of graphene on Cu foils, evaporation of Cu and cha...
Graphene growth on Cu foils by catalytic decomposition of methane forms predominantly single-layer g...
Commonly used techniques for cleaning copper substrates before graphene growth via chemical vapor de...
In this Letter, we found that the growth of graphene on Cu oxide foil is significantly affected by t...
Chemical vapor deposition (CVD) is the most promising method for the preparation of high-quality and...
Advances in synthesis are imperative if graphene is to fulfill its scientific and technological pote...
Graphene was synthesized on Cu foil and film by atmospheric pressure chemical vapor deposition (CVD)...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
2014-2015 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
The ability to protect refined metals from reactive environments is vital to many industrial and aca...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...