Tin dioxide (SnO2) is the most-used semiconductor for gas sensing applications. However, lack of selectivity and humidity influence limit its potential usage. Antimony (Sb) doped SnO2 showed unique electrical and chemical properties, since the introduction of Sb ions leads to the creation of a new shallow band level and of oxygen vacancies acting as donors in SnO2. Although low-doped SnO2:Sb demonstrated an improvement of the sensing performance compared to pure SnO2, there is a lack of investigation on this material. To fill this gap, we focused this work on the study of gas sensing properties of highly doped SnO2:Sb. Morphology, crystal structure and elemental composition were characterized, highlighting that Sb doping hinders SnO2 grain ...
Nanostructured materials have attracted more and more attention in the applications of gas sensing d...
Thin films of antimony-doped tin oxide (SnO2:Sb) were prepared by spray pyrolysis using stannous chl...
The conduction mechanism in highly porous thick film SnO2 sensing layers, obtained by a direct depos...
Tin dioxide (SnO2) is the most-used semiconductor for gas sensing applications. However, lack of sel...
Gas sensors are widely applied to monitor combustible and harmful gases which can be detrimental to ...
in dioxide (SnO2) serves as an important base material in a variety of resistive type gas sensors. T...
The modification of simultaneously existing multiple oxidation states in host lattice cations via th...
Metal oxide gas sensors have many advantages over other solid-state gas monitoring devices, includin...
Pure and Al-doped SnO2 as gas sensors with properties characteristics provoking gas sensitivity were...
Metal oxide-based gas sensors are widely used due to its high sensitivity to harmful for human healt...
Undoped and Sb-doped SnO2 nanofibers were prepared by electrospinning and their responses to H2, CO,...
Palladium is a widely used catalyst in SnO2 gas sensors. At the same time, such sensors often contai...
Tin oxide (SnO2) thin films are having promising properties such as high visible transmittance and l...
Solid-state gas sensors transduce a chemical quantity, such as a gas concentration, into an electric...
© 2022 Elsevier B.V.The heterostructure between two-dimensional (2D) metal sulfides and metal oxides...
Nanostructured materials have attracted more and more attention in the applications of gas sensing d...
Thin films of antimony-doped tin oxide (SnO2:Sb) were prepared by spray pyrolysis using stannous chl...
The conduction mechanism in highly porous thick film SnO2 sensing layers, obtained by a direct depos...
Tin dioxide (SnO2) is the most-used semiconductor for gas sensing applications. However, lack of sel...
Gas sensors are widely applied to monitor combustible and harmful gases which can be detrimental to ...
in dioxide (SnO2) serves as an important base material in a variety of resistive type gas sensors. T...
The modification of simultaneously existing multiple oxidation states in host lattice cations via th...
Metal oxide gas sensors have many advantages over other solid-state gas monitoring devices, includin...
Pure and Al-doped SnO2 as gas sensors with properties characteristics provoking gas sensitivity were...
Metal oxide-based gas sensors are widely used due to its high sensitivity to harmful for human healt...
Undoped and Sb-doped SnO2 nanofibers were prepared by electrospinning and their responses to H2, CO,...
Palladium is a widely used catalyst in SnO2 gas sensors. At the same time, such sensors often contai...
Tin oxide (SnO2) thin films are having promising properties such as high visible transmittance and l...
Solid-state gas sensors transduce a chemical quantity, such as a gas concentration, into an electric...
© 2022 Elsevier B.V.The heterostructure between two-dimensional (2D) metal sulfides and metal oxides...
Nanostructured materials have attracted more and more attention in the applications of gas sensing d...
Thin films of antimony-doped tin oxide (SnO2:Sb) were prepared by spray pyrolysis using stannous chl...
The conduction mechanism in highly porous thick film SnO2 sensing layers, obtained by a direct depos...