Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemical stabilizers by the ion beam assisted deposition technique (IBAD). A transmission electron microscopy study of the samples produced below 150 °C revealed that these films are composed of zirconium oxide (ZrO2) nanocrystallites of diameters 7.5 ± 2.3 nm. X-ray and selected-area electron diffraction studies suggested that the as-deposited films are consistent with cubic phase ZrO2. Rutherford backscattering spectroscopy (RBS) indicated the formation of stoichiometric ZrO2. The phase identity of these optically transparent NSZ films was in agreement with cubic ZrO2, as indicated by the matching elastic modulus values from the calculated resul...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
A detailed characterization of nanostructured thin zirconium oxide films formed during aqueous corro...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
[[abstract]]Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (Zr...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has been...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has been...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has bee...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has bee...
Nanolaminates of ZrO2 and HfO2 were grown by atomic layer deposition, using metal halides and water ...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
A detailed characterization of nanostructured thin zirconium oxide films formed during aqueous corro...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
Nanostructurally stabilized zirconium oxide (NSZ) hard transparent films were produced without chemi...
[[abstract]]Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (Zr...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has been...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has been...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has bee...
Local environment surrounding Zr atoms in the thin films of nanocrystalline zirconia (ZrO2) has bee...
Nanolaminates of ZrO2 and HfO2 were grown by atomic layer deposition, using metal halides and water ...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
A detailed characterization of nanostructured thin zirconium oxide films formed during aqueous corro...