Intercalation of oxygen at the interface of graphene grown by chemical vapour deposition and its polycrystalline copper catalyst can have a strong impact on the electronic, chemical and structural properties of both the graphene and the Cu. This can affect the oxidation resistance of the metal as well as subsequent graphene transfer. Here, we show, using near ambient pressure X-ray photoelectron spectroscopy (NAP-XPS), X-ray absorption near edge spectroscopy (XANES), energy dispersive X-ray spectroscopy (EDX) and (environmental) scanning electron microscopy (ESEM) that both the oxygen intercalation and de-intercalation are kinetically driven and can be clearly distinguished from carbon etching. The obtained results reveal that a charge tran...
CVD-grown graphene exfoliates relatively easily by the oxidation of the copper substrate, yet the in...
We performed spatially resolved near-ambient-pressure photoemission spectromicroscopy on graphene-co...
In this work, we study a basic mechanism for oxygen intercalation through defect sites due to possib...
Intercalation of oxygen at the interface of graphene grown by chemical vapour deposition and its pol...
Intercalation of oxygen at the interface of graphene grown by chemical vapour deposition and its pol...
We investigate the intercalation process of oxygen in-between a PVD-grown graphene layer and differe...
Oxygen intercalation has been proven to be an efficient experimental approach to decouple chemical v...
Graphene deposited by Chemical Vapour Deposition on different copper substrates was characterised us...
The oxidation and corrosion of copper are fundamental issues studied for many decades due to their u...
In this Letter, we found that the growth of graphene on Cu oxide foil is significantly affected by t...
The process of oxidation of a copper surface coated by a layer of graphene in water-saturated air at...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
Herein, we provide a complete description of the intercalation of oxygen at the strongly interacting...
CVD-grown graphene exfoliates relatively easily by the oxidation of the copper substrate, yet the in...
We performed spatially resolved near-ambient-pressure photoemission spectromicroscopy on graphene-co...
In this work, we study a basic mechanism for oxygen intercalation through defect sites due to possib...
Intercalation of oxygen at the interface of graphene grown by chemical vapour deposition and its pol...
Intercalation of oxygen at the interface of graphene grown by chemical vapour deposition and its pol...
We investigate the intercalation process of oxygen in-between a PVD-grown graphene layer and differe...
Oxygen intercalation has been proven to be an efficient experimental approach to decouple chemical v...
Graphene deposited by Chemical Vapour Deposition on different copper substrates was characterised us...
The oxidation and corrosion of copper are fundamental issues studied for many decades due to their u...
In this Letter, we found that the growth of graphene on Cu oxide foil is significantly affected by t...
The process of oxidation of a copper surface coated by a layer of graphene in water-saturated air at...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
Complementary in situ X-ray photoelectron spectroscopy (XPS), X-ray diffractometry, and environmenta...
Herein, we provide a complete description of the intercalation of oxygen at the strongly interacting...
CVD-grown graphene exfoliates relatively easily by the oxidation of the copper substrate, yet the in...
We performed spatially resolved near-ambient-pressure photoemission spectromicroscopy on graphene-co...
In this work, we study a basic mechanism for oxygen intercalation through defect sites due to possib...