A new and general approach to analyze Gibbsian segregation at heterophase interfaces is proposed. It is tested on the possible segregation of indium dissolved in a copper matrix to interfaces between MnO precipitates and the copper matrix. In the present approach the actual concentration of the segregating element in a monolayer at the interface is obtained. This is in contrast to line-scans or maps where the concentrations determined are a convolution of the concentration profiles with the electron probe and where, for general interfaces, the deconvolution problem cannot be solved accurately. This is possible because the present approach uses explicitly the information offered by hetero-interfaces. The occurrence of indium segregation is c...
This research program addresses fundamental questions concerning the relations between atomic struct...
This research program addresses fundamental questions concerning the relationships between atomic st...
Competitive segregation of gallium and indium at heterophase Cu–MnO interfaces studied wit
A new and general approach to analyze Gibbsian segregation at heterophase interfaces is proposed. It...
A new and general approach to analyze Gibbsian segregation at heterophase interfaces is proposed. It...
An alternative methodology to analyze Gibbsian segregation at heterophase interfaces with transmissi...
Abstract. An alternative methodology to analyze Gibbsian segregation at heterophase interfaces with ...
This paper concentrates on the possible segregation of indium and gallium and competitive segregatio...
This paper concentrates on the possible segregation of indium and gallium and competitive segregatio...
In order to understand the bonding between metals and oxides, interfaces were studied with high-reso...
This research program addresses fundamental questions concerning the relationships between atomic st...
In many engineering applications materials are explored that contain both metals and ceramics. In or...
This research program addresses fundamental questions concerning the relations between atomic struct...
Abstract—The first quantitative measurements of solute segregation at ceramic/metal (C/M) heterophas...
How the core structure of an interface dislocation network depends on both misfit and bond strength ...
This research program addresses fundamental questions concerning the relations between atomic struct...
This research program addresses fundamental questions concerning the relationships between atomic st...
Competitive segregation of gallium and indium at heterophase Cu–MnO interfaces studied wit
A new and general approach to analyze Gibbsian segregation at heterophase interfaces is proposed. It...
A new and general approach to analyze Gibbsian segregation at heterophase interfaces is proposed. It...
An alternative methodology to analyze Gibbsian segregation at heterophase interfaces with transmissi...
Abstract. An alternative methodology to analyze Gibbsian segregation at heterophase interfaces with ...
This paper concentrates on the possible segregation of indium and gallium and competitive segregatio...
This paper concentrates on the possible segregation of indium and gallium and competitive segregatio...
In order to understand the bonding between metals and oxides, interfaces were studied with high-reso...
This research program addresses fundamental questions concerning the relationships between atomic st...
In many engineering applications materials are explored that contain both metals and ceramics. In or...
This research program addresses fundamental questions concerning the relations between atomic struct...
Abstract—The first quantitative measurements of solute segregation at ceramic/metal (C/M) heterophas...
How the core structure of an interface dislocation network depends on both misfit and bond strength ...
This research program addresses fundamental questions concerning the relations between atomic struct...
This research program addresses fundamental questions concerning the relationships between atomic st...
Competitive segregation of gallium and indium at heterophase Cu–MnO interfaces studied wit