Porous Ce0.94Zr0.06O2 nano-sheets sensing material was synthesized using a facile sol-hydrothermal process. The average thickness of the Ce0.94Zr0.06O2 nano-sheets was about 8 nm, and the nano-sheets were found to have a mesoporous structure with an average pore size around 2.1 nm. The mesoporous structure of Ce0.94Zr0.06O2 nano-sheets resulted in larger specific surface areas of 185.4 m2/g and more pore volumes of 0.51 cm3/g than those of CeO2, which was beneficial to the absorption of target gas. Due to the special mesoporous structures in the nano-sheets and the plenty of hydroxyl groups on the surface, the NH3 sensors made of the porous Ce0.94Zr0.06O2 nano-sheets showed a higher sensitivity (87–100 ppm NH3) and a lower detection limit (...
Here, we report the fabrication of a flexible room temperature ammonia gas sensor using surfactant-f...
Regularly shaped, single-crystalline ZnO microrods (MRs) with wurtzite structure were prepared via a...
In this work, nanostructured CeO2 microspheres with high surface area and mesoporosity were prepared...
Porous Ce0.94Zr0.06O2 nano-sheets sensing material was synthesized using a facile sol-hydrothermal p...
The silica modified CeO2 gas sensing nanomaterials are synthesized using a sol-hydrothermal route. T...
Network nano-sheet arrays of Co3O4 for high precision NH3 sensing application were prepared on alumi...
We report a room-temperature NH3 gas sensor with high response and great long-term stability, includ...
CeO2 nanowires were synthesized using a facile hydrothermal process without any surfactant, and thei...
Mesoporous CeO2nanospheres with appreciably highsurface area are prepared using reversed micelles by...
Fast and selective detection of NH3 at parts‐per‐billion (ppb) concentrations with inexpensive and l...
The gas-detecting ability of nanostructured ZnO has led to significant attention being paid to the d...
AbstractHere we propose ceria (CeO2) as a sensing layer material for CO2 in low power consumption wo...
The development of a new type of hybrid material comprising naphthalene-based π-conjugated amine (NB...
Hydrogen gas sensors were fabricated using mesoporous In2O3 synthesized using hydrothermal reaction ...
We report a room-temperature NH<sub>3</sub> gas sensor with high response and great long-term stabil...
Here, we report the fabrication of a flexible room temperature ammonia gas sensor using surfactant-f...
Regularly shaped, single-crystalline ZnO microrods (MRs) with wurtzite structure were prepared via a...
In this work, nanostructured CeO2 microspheres with high surface area and mesoporosity were prepared...
Porous Ce0.94Zr0.06O2 nano-sheets sensing material was synthesized using a facile sol-hydrothermal p...
The silica modified CeO2 gas sensing nanomaterials are synthesized using a sol-hydrothermal route. T...
Network nano-sheet arrays of Co3O4 for high precision NH3 sensing application were prepared on alumi...
We report a room-temperature NH3 gas sensor with high response and great long-term stability, includ...
CeO2 nanowires were synthesized using a facile hydrothermal process without any surfactant, and thei...
Mesoporous CeO2nanospheres with appreciably highsurface area are prepared using reversed micelles by...
Fast and selective detection of NH3 at parts‐per‐billion (ppb) concentrations with inexpensive and l...
The gas-detecting ability of nanostructured ZnO has led to significant attention being paid to the d...
AbstractHere we propose ceria (CeO2) as a sensing layer material for CO2 in low power consumption wo...
The development of a new type of hybrid material comprising naphthalene-based π-conjugated amine (NB...
Hydrogen gas sensors were fabricated using mesoporous In2O3 synthesized using hydrothermal reaction ...
We report a room-temperature NH<sub>3</sub> gas sensor with high response and great long-term stabil...
Here, we report the fabrication of a flexible room temperature ammonia gas sensor using surfactant-f...
Regularly shaped, single-crystalline ZnO microrods (MRs) with wurtzite structure were prepared via a...
In this work, nanostructured CeO2 microspheres with high surface area and mesoporosity were prepared...