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Zhai LH,Wei ZZ,Yang ZY, et al.Polymerization initiated by ZnS nanocrystals anchored on carbon nanotubes. Materials Letters . 2010Zhai LH,Wei ZZ,Yang ZY, et al.Polymerization initiated by ZnS nanocrystals anchored on carbon nanotubes. Materials Letters . 2010...
Milind D. Bhise,Brian Sanders,Nic Dalacu,Adrian H. Kital.Coverage of rough substrates by ZnS using vacuum evaporation and atomic layer epitaxy[J]. Journal of Materials Science .1989(9)Milind D. Bhise,Brian Sanders,Nic Dalacu,Adrian H. Kital. Coverage of rough substrates by ZnS ...
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Photosensitization of TiO2 by ZnS and bromo thymol blue and its application in photodegradation of para-nitrophenol Pouretedal H R,Sohrabi A M.Photosensitization of Ti O2by Zn S and bromo thymol blue and its application in photodegradation of para-nitrophenol[J].J ... Pouretedal,H.,R.,.....
found that ZnS semiconductor is active for photocatalytic conversion of the CH3OH solution to EG and H2 by UV irradiation, giving a 2% of CH3OH conversion.58 Subsequently, Gu et al. adopted freshly prepared colloidal ZnS to catalyze the reaction by UV irradiation, CH3OH conversion was increased...
In this work, the phase ZnSb2O6, an intermediate phase, was used as antimony ion source, in substitution to the Sb2O3 oxide, in the ZnO based varistor composition. Sintered samples at 1200 oC showed a non-ohmic coefficient (Alfa) equal to 20 and a reference electric field (Er), at...
ZnS ceramic has been extensively used in various optical applications, e.g., full-wave band infrared window. The attractiveness of this material is explained by its wider transmission radiation range and higher infrared transmittance. An infrared window has often to be bonded to the protective metal...
Defect engineering is a promising method for improving light harvesting in photocatalytic materials like Zinc sulphide (ZnS). By altering the S/Zn molar ratio during hydrothermal processes, Zn and S defects are successfully introduced into the ZnS crysta
The photoluminescence (PL) of ZnS:Mn nanocrystals was improved greatly by microwave assisted growth of ZnS shell. Under optimized conditions, the luminescence quantum yield of ZnS:Mn nanocrystals increased from 2.8% to 12.1% after the growth of the ZnS shell. Time-resolved fluorescence spectroscopic...