Zobrazeno 1 - 10
of 11
pro vyhledávání: '"E. Zur Muhlen"'
Publikováno v:
physica status solidi (b). 198:673-686
Porous silicon (PS) layers were created with different etching conditions on boron doped silicon wafers. Morphologies of the PS layers and their surfaces were investigated with atomic force and scanning electron microscopy. Low current densities duri
Publikováno v:
Surface Review and Letters. :1847-1856
The physical and chemical interaction of an alloy with its environment is dictated not by its bulk composition but by the surface concentration of different elements and their physical arrangement. Of the tools developed to measure these properties,
Publikováno v:
European Journal of Soil Science. 47:329-334
Summary A multidomain goethite was analysed with atomic force microscopy (AFM) to obtain information about the size and shape of pores on the surface, which are important for sorption processes of cations and anions. Wedge-shaped pores > 100 nm long
Publikováno v:
Surface Science. 359:54-64
The clean α-Cu0.82Al0.18(100) surface has been investigated using low energy ion scattering. The surface structure was found to be similar to the structure of the Cu(100) surface. By measuring the first layer concentration of Al using He+ and Ne+ be
Publikováno v:
Surface Review and Letters. :1241-1245
The adsorption of oxygen on α- Cu 0.82 Al 0.18(100) has been investigated using low energy ion scattering. It was found that initially oxygen adsorbed on Al sites and then it adsorbed on Cu sites before all Al sites were occupied at room temperature
Publikováno v:
Pharmaceutical Research. 13:1411-1416
Purpose. Solid Lipid Nanoparticles (SLN) are an alternative carrier system for the controlled delivery of drugs. In most cases prednisolone loaded SLN show a biphasic release behaviour. The initial phase is characterised by a fast drug release, which
Autor:
Horst Niehus, E. Zur Muhlen
Publikováno v:
physica status solidi (b). 190:21-25
The fabrication of porous silicon (PS) with controlled pore size distributions is of importance for reproducible manufacturing as well as it may help to elucidate the origin of light emission from this material. The pore formation on p-doped Si(111)
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