Ordered SnO2 nanostructures were prepared as humidity sensors by nanosphere lithography with the magnetron sputtering technique. The X-ray diffraction patterns of SnO2 nanostructures show that all intense diffraction peaks correspond to the crystallographic planes of SnO2. The Atomic Force Microscope (AFM) mage shows that these SnO2 nanostructures exhibited a classic honeycomb structure. The resistance of this sensor was measured to show that the resistance of the sensor decreases with an increase from lower relative humidity (RH) to higher RH. Additionally, the longest response/recovery time was 32 s/42 s for 11–96% RH. The hysteresis for the SnO2 nanostructure sensor was <5%
Developing highly efficient semiconductor metal oxide (SMOX) sensors capable of accurate and fast re...
AbstractZinc doped tin oxide (Zn-doped SnO2) with three dimension (3D) cubic structure has been succ...
© 2022 Elsevier B.V.The heterostructure between two-dimensional (2D) metal sulfides and metal oxides...
Nanoscaled spherical, facetted-spherical and octahedral shapes of high yield and economically viable...
SnO2 nanosheets with abundant vacancies (designated as SnO2–x) have been successfully prepared by an...
This work presents the fabrication of humidity sensor based on SnO2 sensing material derived by the ...
building blocks for constructing nanosized devices due to high surface to volume ratio and their spe...
The development of a flexible and high-performance humidity sensor is essential to expand its new ap...
Nanocomposite Zn2SnO4/SnO2 powder wasobtained by solid state synthesis from homogenizedstarting nano...
Nanocomposite Zn2SnO4/SnO2 powder was obtained by solid state synthesis from homogenized starting na...
For the first time, a rutile phased tin oxide (SnO2) nanosheet was assembled onto a zinc oxide (ZnO)...
Developing highly efficient semiconductor metal oxide (SMOX) sensors capable of accurate and fast re...
Highly sensitive large-scale tin oxide (SnO2) nanostructures were grown on a glass substrate by ther...
In this paper the humidity sensing properties of layers prepared by a new method for obtaining doped...
The present study focuses the development and the evaluation of humidity sensors based on reduced gr...
Developing highly efficient semiconductor metal oxide (SMOX) sensors capable of accurate and fast re...
AbstractZinc doped tin oxide (Zn-doped SnO2) with three dimension (3D) cubic structure has been succ...
© 2022 Elsevier B.V.The heterostructure between two-dimensional (2D) metal sulfides and metal oxides...
Nanoscaled spherical, facetted-spherical and octahedral shapes of high yield and economically viable...
SnO2 nanosheets with abundant vacancies (designated as SnO2–x) have been successfully prepared by an...
This work presents the fabrication of humidity sensor based on SnO2 sensing material derived by the ...
building blocks for constructing nanosized devices due to high surface to volume ratio and their spe...
The development of a flexible and high-performance humidity sensor is essential to expand its new ap...
Nanocomposite Zn2SnO4/SnO2 powder wasobtained by solid state synthesis from homogenizedstarting nano...
Nanocomposite Zn2SnO4/SnO2 powder was obtained by solid state synthesis from homogenized starting na...
For the first time, a rutile phased tin oxide (SnO2) nanosheet was assembled onto a zinc oxide (ZnO)...
Developing highly efficient semiconductor metal oxide (SMOX) sensors capable of accurate and fast re...
Highly sensitive large-scale tin oxide (SnO2) nanostructures were grown on a glass substrate by ther...
In this paper the humidity sensing properties of layers prepared by a new method for obtaining doped...
The present study focuses the development and the evaluation of humidity sensors based on reduced gr...
Developing highly efficient semiconductor metal oxide (SMOX) sensors capable of accurate and fast re...
AbstractZinc doped tin oxide (Zn-doped SnO2) with three dimension (3D) cubic structure has been succ...
© 2022 Elsevier B.V.The heterostructure between two-dimensional (2D) metal sulfides and metal oxides...