Ag-modified In2O3/ZnO bundles with micro/nano porous structures have been designed and synthesized with by hydrothermal method continuing with dehydration process. Each bundle consists of nanoparticles, where nanogaps of 10–30 nm are present between the nanoparticles, leading to a porous structure. This porous structure brings high surface area and fast gas diffusion, enhancing the gas sensitivity. Consequently, the HCHO gas-sensing performance of the Ag-modified In2O3/ZnO bundles have been tested, with the formaldehyde-detection limit of 100 ppb (parts per billion) and the response and recover times as short as 6 s and 3 s, respectively, at 300 °C and the detection limit of 100 ppb, response time of 12 s and recover times of 6 s at 100 °C....
International audienceInteresting sensing performances of indoor formaldehyde pollution were obtaine...
In this work, a continuous two-step route consisting of ammonolysis and re-oxidation process was dev...
Oxide semiconductor In2O3 has been extensively used as a gas sensing material for the detection of v...
Here we present a class of formaldehyde (HCHO) gas sensors with strong responses based on ordered me...
Heteronanostructures are very promising gas sensor materials due to their high surface area and hybr...
Pure In2O3 nanoparticles are prepared by a facile precipitation method and are further modified by A...
Uniform and monodisperse Co-doped In<sub>2</sub>O<sub>3</sub> nanorods were fabricated by a facile a...
The urchin-like core-shell In2O3/ZnO nanocomposites were prepared via a facile solvothermal method w...
We have fabricated Ag2O-functionalized In2O3 nanowires, in which the NO2 gas sensing properties are ...
The development of highly-sensitive and moisture resistant semiconductor metal oxide (SMO) gas senso...
Ag@SnO2 nanosheets were prepared through a hydrothermal method followed by heat treatment and a liqu...
Undoped and In-doped ZnO including nanoparticles and nanorods were successfully synthesized via sol ...
A highly sensitive and selective detection of volatile organic compounds (VOCs) by using gas sensors...
Zinc oxide nanoparticles are prepated by calcining zinc hydrocarbonate precursors at 300-700 degrees...
Complex three-dimensional structures comprised of porous ZnO plates were synthesized in a controlled...
International audienceInteresting sensing performances of indoor formaldehyde pollution were obtaine...
In this work, a continuous two-step route consisting of ammonolysis and re-oxidation process was dev...
Oxide semiconductor In2O3 has been extensively used as a gas sensing material for the detection of v...
Here we present a class of formaldehyde (HCHO) gas sensors with strong responses based on ordered me...
Heteronanostructures are very promising gas sensor materials due to their high surface area and hybr...
Pure In2O3 nanoparticles are prepared by a facile precipitation method and are further modified by A...
Uniform and monodisperse Co-doped In<sub>2</sub>O<sub>3</sub> nanorods were fabricated by a facile a...
The urchin-like core-shell In2O3/ZnO nanocomposites were prepared via a facile solvothermal method w...
We have fabricated Ag2O-functionalized In2O3 nanowires, in which the NO2 gas sensing properties are ...
The development of highly-sensitive and moisture resistant semiconductor metal oxide (SMO) gas senso...
Ag@SnO2 nanosheets were prepared through a hydrothermal method followed by heat treatment and a liqu...
Undoped and In-doped ZnO including nanoparticles and nanorods were successfully synthesized via sol ...
A highly sensitive and selective detection of volatile organic compounds (VOCs) by using gas sensors...
Zinc oxide nanoparticles are prepated by calcining zinc hydrocarbonate precursors at 300-700 degrees...
Complex three-dimensional structures comprised of porous ZnO plates were synthesized in a controlled...
International audienceInteresting sensing performances of indoor formaldehyde pollution were obtaine...
In this work, a continuous two-step route consisting of ammonolysis and re-oxidation process was dev...
Oxide semiconductor In2O3 has been extensively used as a gas sensing material for the detection of v...