The electronic structure of nanolaminate Ti2AlC and Ti2AlN thin films, so-called MAX-phases, were investigated by soft X-ray emission spectroscopy. These nanolaminated carbide and nitride compounds represent a class of layered materials with a combination of properties from both metals and ceramics. The bulk-sensitive soft X-ray emission technique is particularly useful for detecting detailed electronic structure information about internal monolayers and interfaces. The Ti-Al bonding is manifested by a pronounced peak in the Ti L-emission of Ti2AlC and Ti2AlN that is not present in the binary TiC system. The spectral shape of Al L-emission in the MAX-phase is strongly modified in comparison to metallic Al. By replacing or partly exchanging ...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The inherently nanolaminated Ti3AlC2 is one of the most studied MAX-phase materials. MAX-phases cons...
The electronic structure of the MAX-phase Ti2AlC was investigated by soft x-ray emission spectroscop...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structure of the MAX-phase Ti pectroscopy. This nanolaminated carbide compound repres...
The electronic structure of the MAX-phase Ti pectroscopy. This nanolaminated carbide compound repres...
The electronic structure of the MAX-phase Ti pectroscopy. This nanolaminated carbide compound repres...
The electronic structure of the nanolaminated transition metal carbide Ti2AlC has been investigated ...
The electronic structure of the nanolaminated transition metal carbide Ti2AlC has been investigated ...
Theelectronic structure of the nanolaminated transition metal carbide Ti2AlC hasbeen investigated by...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The inherently nanolaminated Ti3AlC2 is one of the most studied MAX-phase materials. MAX-phases cons...
The electronic structure of the MAX-phase Ti2AlC was investigated by soft x-ray emission spectroscop...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structures of the MAX-phases Ti3AlC2, Ti3SiC2 and Ti3GeC2 were investigated by soft X...
The electronic structure of the MAX-phase Ti pectroscopy. This nanolaminated carbide compound repres...
The electronic structure of the MAX-phase Ti pectroscopy. This nanolaminated carbide compound repres...
The electronic structure of the MAX-phase Ti pectroscopy. This nanolaminated carbide compound repres...
The electronic structure of the nanolaminated transition metal carbide Ti2AlC has been investigated ...
The electronic structure of the nanolaminated transition metal carbide Ti2AlC has been investigated ...
Theelectronic structure of the nanolaminated transition metal carbide Ti2AlC hasbeen investigated by...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The electronic structures of epitaxially grown films of Ti3AlC2, Ti3SiC2, and Ti3GeC2 have been inve...
The inherently nanolaminated Ti3AlC2 is one of the most studied MAX-phase materials. MAX-phases cons...