Er-doped SnO2 thin films, obtained by sol-gel-dip-coating technique, were submitted to excitation with the 4th harmonic of a Nd:YAG laser (266 nm), at low temperature, and a conductivity decay is observed when the illumination is removed. This decay is modeled by considering a thermally activated cross section of an Er-related trapping center. Besides, grain boundary scattering is considered as dominant for electronic mobility. X-ray diffraction data show a characteristic profile of nanoscopic crystallite material (grain average size approximate to 5 nm) in agreement with this model. Temperature dependent and concentration dependent decays are measured and the capture barrier is evaluated from the model, yielding 100 meV for SnO2:0.1% Er an...
Since oxygen vacancies act as donors in SnO2, the electrical properties are related to deviation fro...
Rare-earth doped (Eu3+ or Ce3+) thin layers of tin dioxide (SnO2) are deposited by the sol-gel-dip-c...
Thin and porous SnO2 films (70 nm thick with grain size between 10 and 30 nm) have been prepared by ...
In order to investigate optically excited electronic transport in Er-doped SnO2, thin films are exci...
Photoconductivity of SnO2 sol-gel films is excited, at low temperature, by using a 266 nm line-fourt...
We present photoluminescence and decay of photo excited conductivity data for sol-gel SnO(2) thin fi...
Photoluminescence and photo-excited conductivity data as well as structural analysis are presented f...
Electrical properties of Er-doped SnO2 thin films obtained by sol-gel-dip-coating technique were mea...
Some very relevant optical. electrical, and structural properties of SnO2 doped with rare-earth ions...
Optical excitation of Ce3+-doped SnO2 thin films, obtained by the sol-gel-dip-coating technique, is ...
Sol-gel spin-coating SnO2 thin films were deposited and processed through positive photolithography ...
The evaluation of free carrier concentration based on Drude's theory can be performed by the use of ...
Thin films of undoped and Sb-doped (2 atg%) SnO2 have been prepared by sol-gel dip-coating technique...
Doping tin dioxide (SnO2) with pentavalent Sb5+ ions leads to an enhancement in the electrical condu...
Er-doped SnO2 thin films and xerogels are obtained by sol-gel technique. In order to understand the ...
Since oxygen vacancies act as donors in SnO2, the electrical properties are related to deviation fro...
Rare-earth doped (Eu3+ or Ce3+) thin layers of tin dioxide (SnO2) are deposited by the sol-gel-dip-c...
Thin and porous SnO2 films (70 nm thick with grain size between 10 and 30 nm) have been prepared by ...
In order to investigate optically excited electronic transport in Er-doped SnO2, thin films are exci...
Photoconductivity of SnO2 sol-gel films is excited, at low temperature, by using a 266 nm line-fourt...
We present photoluminescence and decay of photo excited conductivity data for sol-gel SnO(2) thin fi...
Photoluminescence and photo-excited conductivity data as well as structural analysis are presented f...
Electrical properties of Er-doped SnO2 thin films obtained by sol-gel-dip-coating technique were mea...
Some very relevant optical. electrical, and structural properties of SnO2 doped with rare-earth ions...
Optical excitation of Ce3+-doped SnO2 thin films, obtained by the sol-gel-dip-coating technique, is ...
Sol-gel spin-coating SnO2 thin films were deposited and processed through positive photolithography ...
The evaluation of free carrier concentration based on Drude's theory can be performed by the use of ...
Thin films of undoped and Sb-doped (2 atg%) SnO2 have been prepared by sol-gel dip-coating technique...
Doping tin dioxide (SnO2) with pentavalent Sb5+ ions leads to an enhancement in the electrical condu...
Er-doped SnO2 thin films and xerogels are obtained by sol-gel technique. In order to understand the ...
Since oxygen vacancies act as donors in SnO2, the electrical properties are related to deviation fro...
Rare-earth doped (Eu3+ or Ce3+) thin layers of tin dioxide (SnO2) are deposited by the sol-gel-dip-c...
Thin and porous SnO2 films (70 nm thick with grain size between 10 and 30 nm) have been prepared by ...