The use of protective barriers to isolate a metal surface from an aggressive environment is a common way to inhibit its degradation. We used ambient pressure x-ray photoelectron spectroscopy to assess in real time the evolution of the copper surface and the contextual protective action of 2D material coatings (graphene and hexagonal boron nitride) towards copper oxidation. In an isobaric experiment with 2 mbar of oxygen, the bare copper oxidizes near room temperature, while both 2D materials can retard the onset temperature for the first oxidation of copper by more than 120 °C. However, their protection mechanism is different: boron nitride behaves more straightforwardly, forming an effective barrier to copper oxidation until it is etched a...
The process of oxidation of a copper surface coated by a layer of graphene in water-saturated air at...
The long-term (>18 months) protection of Ni surfaces against oxidation under atmospheric conditions ...
The wet-oxidation of a single crystal Cu(111) foil is studied by growing single crystal graphene isl...
Applying protective or barrier layers to isolate a target item from the environment is a common appr...
The oxidation and corrosion of copper are fundamental issues studied for many decades due to their u...
Oral presentation given at the European Congress and Exhibition on Advanced Materials and Processes,...
We performed spatially resolved near-ambient-pressure photoemission spectromicroscopy on graphene-co...
Despite the extraordinary impermeability of graphene, graphene fails to prevent oxidation of Cu surf...
The development of ultrathin barrier films is vital to the advanced semiconductor industry. Graphene...
Coatings are routinely applied to protect metallic surfaces, and polymer coatings have been conventi...
The ability to protect refined metals from reactive environments is vital to many industrial and aca...
Graphene has been demonstrated as a protective coating for Cu under ambient condition because of its...
Although the high impermeability of graphene makes it an excellent barrier to inhibit metal oxidatio...
Metal corrosion is a long-lasting problem in history and ultrahigh anticorrosion is one ultimate pur...
Two different types of boron-doped graphene/copper interfaces synthesized using two different flow r...
The process of oxidation of a copper surface coated by a layer of graphene in water-saturated air at...
The long-term (>18 months) protection of Ni surfaces against oxidation under atmospheric conditions ...
The wet-oxidation of a single crystal Cu(111) foil is studied by growing single crystal graphene isl...
Applying protective or barrier layers to isolate a target item from the environment is a common appr...
The oxidation and corrosion of copper are fundamental issues studied for many decades due to their u...
Oral presentation given at the European Congress and Exhibition on Advanced Materials and Processes,...
We performed spatially resolved near-ambient-pressure photoemission spectromicroscopy on graphene-co...
Despite the extraordinary impermeability of graphene, graphene fails to prevent oxidation of Cu surf...
The development of ultrathin barrier films is vital to the advanced semiconductor industry. Graphene...
Coatings are routinely applied to protect metallic surfaces, and polymer coatings have been conventi...
The ability to protect refined metals from reactive environments is vital to many industrial and aca...
Graphene has been demonstrated as a protective coating for Cu under ambient condition because of its...
Although the high impermeability of graphene makes it an excellent barrier to inhibit metal oxidatio...
Metal corrosion is a long-lasting problem in history and ultrahigh anticorrosion is one ultimate pur...
Two different types of boron-doped graphene/copper interfaces synthesized using two different flow r...
The process of oxidation of a copper surface coated by a layer of graphene in water-saturated air at...
The long-term (>18 months) protection of Ni surfaces against oxidation under atmospheric conditions ...
The wet-oxidation of a single crystal Cu(111) foil is studied by growing single crystal graphene isl...