Understanding the interaction between graphene and its supporting substrate is of paramount importance for the development of graphene based applications. In this work the interplay of the technologically relevant graphene-Cu system is investigated in detail as a function of substrate grain orientation in Cu polycrystalline foils. While (100) and (111) Cu grains show the well-known graphene-enhanced oxidation, (110) grains present a superior oxidation resistance compared to uncovered Cu and an anomalous shift of its graphene 2D Raman band which cannot be explained by the known effects of strain and doping. These results are interpreted in terms of a weak graphene-Cu coupling at the (110) grains, and show that graphene can actually be used a...
MasterWhile chemical vapor deposition (CVD) of graphene on copper substrates is one of the primary p...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
The nature of graphene-metal bonding is crucial for the performance of graphene-based electronic dev...
Significant changes in the Raman spectrum of single-layer graphene grown on a copper film were obser...
Significant changes in the Raman spectrum of single-layer graphene grown on a copper film were obser...
© 2019 American Chemical Society.The enhanced growth of Cu oxides underneath graphene grown on a Cu ...
Stable Graphene/gas/Cu bubbles are formed by the spontaneous oxidation at room conditions of the Cu ...
We combine spatially resolved scanning photoelectron spectroscopy with confocal Raman and optical mi...
The growth of graphene on copper foil has been performed, following the well-known low-pressure chem...
The ultimate aim of the current study is to investigate the electron transfer from copper (Cu) to si...
We combine spatially resolved scanning photoelectron spectroscopy with confocal Raman and optical mi...
The development of ultrathin barrier films is vital to the advanced semiconductor industry. Graphene...
[[abstract]]Graphene CVD-grown on Cu has been studied using Raman spectroscopy, X-ray absorption spe...
We combine spatially resolved scanning photoelectron spectroscopy with confocal Raman and optical mi...
In this article we present the results of micro-Raman studies of graphene grown on copper foil surfa...
MasterWhile chemical vapor deposition (CVD) of graphene on copper substrates is one of the primary p...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
The nature of graphene-metal bonding is crucial for the performance of graphene-based electronic dev...
Significant changes in the Raman spectrum of single-layer graphene grown on a copper film were obser...
Significant changes in the Raman spectrum of single-layer graphene grown on a copper film were obser...
© 2019 American Chemical Society.The enhanced growth of Cu oxides underneath graphene grown on a Cu ...
Stable Graphene/gas/Cu bubbles are formed by the spontaneous oxidation at room conditions of the Cu ...
We combine spatially resolved scanning photoelectron spectroscopy with confocal Raman and optical mi...
The growth of graphene on copper foil has been performed, following the well-known low-pressure chem...
The ultimate aim of the current study is to investigate the electron transfer from copper (Cu) to si...
We combine spatially resolved scanning photoelectron spectroscopy with confocal Raman and optical mi...
The development of ultrathin barrier films is vital to the advanced semiconductor industry. Graphene...
[[abstract]]Graphene CVD-grown on Cu has been studied using Raman spectroscopy, X-ray absorption spe...
We combine spatially resolved scanning photoelectron spectroscopy with confocal Raman and optical mi...
In this article we present the results of micro-Raman studies of graphene grown on copper foil surfa...
MasterWhile chemical vapor deposition (CVD) of graphene on copper substrates is one of the primary p...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
The nature of graphene-metal bonding is crucial for the performance of graphene-based electronic dev...