Preparation and properties of uniformly dispersed Cu metal nanoclusters embedded in bulk silica are described. Clear gels were prepared from Cu(NO3)2,H2N(CH2)2NH(CH2)3Si(OCH3)3 (DAMO), and acid hydrolyzed Si(OC2Hs)4(TEOS). The role of DAMO to immobilize Cu 2+ in silica network is studied. The appearance of a strong surface plasmon band of Cu colloids at 562 nm was observed after heat treatment of the gels at 900°C in 5%H2-95%N 2 gas atmosphere. At this stage very uniform ruby-red color of the sample was established due to the formation of copper nanocrystals of mean diameter 15 nm, as confirmed by X-ray diffraction (XRD) and transmission electron microscopy (TEM)
Silica films containing metal particles in the nanometer size range exhibit optical properties that ...
Prescribed nanocluster composite glass features require the control of the cluster formation and gro...
We report in this paper, results on the formation and dissolution of Cu-based nanoparticles in sol-g...
The synthetic mechanism of uniformly dispersed Cu-nanocluster doped (0.05-1.0 wt%) silica glasses (c...
The synthetic mechanism of uniformly dispersed Cu-nanocluster doped (0.05-1.0 wt%) silica glasses (c...
Recent results concerning fabrication and optical features of the sol-gel materials are reviewed. Th...
Nanocomposite silica glassy layers (host) containing copper-based species (guest) were developed and...
Ag and Cu ~pure and/or mixture! nanoclusters doped silica films were prepared by the sol-gel process...
In a program on the development of metal nanoclusters in sol-gel derived thin films, attempts were m...
A sol-gel method for the preparation of transparent copper nano particle-containing SiO2 coatings on...
Mixed Ag[sbnd]Cu nanoclusters with doped silica coatings were prepared by the sol-gel process and ch...
Recent achievements on fabrication, structure and optical features of the metal- and semiconductor-d...
Using IR absorption and X-Ray diffraction we have analyzed the incorporation of Cu-based aggregates ...
Silica films containing metal particles in the nanometer size range exhibit optical properties that ...
A sol-gel route to synthesize semiconductor cuprous halide CuX (X = Cl, Br) nanoparticles in a glass...
Silica films containing metal particles in the nanometer size range exhibit optical properties that ...
Prescribed nanocluster composite glass features require the control of the cluster formation and gro...
We report in this paper, results on the formation and dissolution of Cu-based nanoparticles in sol-g...
The synthetic mechanism of uniformly dispersed Cu-nanocluster doped (0.05-1.0 wt%) silica glasses (c...
The synthetic mechanism of uniformly dispersed Cu-nanocluster doped (0.05-1.0 wt%) silica glasses (c...
Recent results concerning fabrication and optical features of the sol-gel materials are reviewed. Th...
Nanocomposite silica glassy layers (host) containing copper-based species (guest) were developed and...
Ag and Cu ~pure and/or mixture! nanoclusters doped silica films were prepared by the sol-gel process...
In a program on the development of metal nanoclusters in sol-gel derived thin films, attempts were m...
A sol-gel method for the preparation of transparent copper nano particle-containing SiO2 coatings on...
Mixed Ag[sbnd]Cu nanoclusters with doped silica coatings were prepared by the sol-gel process and ch...
Recent achievements on fabrication, structure and optical features of the metal- and semiconductor-d...
Using IR absorption and X-Ray diffraction we have analyzed the incorporation of Cu-based aggregates ...
Silica films containing metal particles in the nanometer size range exhibit optical properties that ...
A sol-gel route to synthesize semiconductor cuprous halide CuX (X = Cl, Br) nanoparticles in a glass...
Silica films containing metal particles in the nanometer size range exhibit optical properties that ...
Prescribed nanocluster composite glass features require the control of the cluster formation and gro...
We report in this paper, results on the formation and dissolution of Cu-based nanoparticles in sol-g...