Recent progress on flexible room-temperature gas sensors based on metal oxide semiconductor
LX Ou, MY Liu, LY Zhu, DW Zhang, HL Lu - Nano-Micro Letters, 2022 - Springer
With the rapid development of the Internet of Things, there is a great demand for portable
gas sensors. Metal oxide semiconductors (MOS) are one of the most traditional and well …
gas sensors. Metal oxide semiconductors (MOS) are one of the most traditional and well …
[HTML][HTML] Advanced polymeric/inorganic nanohybrids: An integrated platform for gas sensing applications
Rapid industrial development, vehicles, domestic activities and mishandling of garbage are
the main sources of pollutants, which are destroying the atmosphere. There is a need to …
the main sources of pollutants, which are destroying the atmosphere. There is a need to …
Recent progress in hybrid conducting polymers and metal oxide nanocomposite for room-temperature gas sensor applications: A review
The rapid development of conducting polymers has demonstrated great potential for
chemical gas detection at room temperature. Their electrical conductivity can be altered …
chemical gas detection at room temperature. Their electrical conductivity can be altered …
Recent advances in sensing and assessment of corrosion in sewage pipelines
Corrosion is known as the gradual destruction of materials, leading to structural integrity loss
and deteriorates the surface function. Regarding sewage pipelines, corrosion is vital due to …
and deteriorates the surface function. Regarding sewage pipelines, corrosion is vital due to …
Humidity-activated H2S sensor based on SnSe2/WO3 composite for evaluating the spoilage of eggs at room temperature
X Guo, Y Ding, C Liang, B Du, C Zhao, Y Tan… - Sensors and Actuators B …, 2022 - Elsevier
Abstract Hydrogen sulfide (H 2 S), as a representative food spoilage gas produced by the
breakdown of sulfur-containing proteins, is highly irritant and toxic. Designing gas sensors …
breakdown of sulfur-containing proteins, is highly irritant and toxic. Designing gas sensors …
N-doped honeycomb-like porous carbon derived from biomass as an efficient carbocatalyst for H2S selective oxidation
C Xu, J Chen, S Li, Q Gu, D Wang, C Jiang… - Journal of Hazardous …, 2021 - Elsevier
Abstract 3D interconnected porous N-doped carbocatalyst derived from the waste air-laid
paper plays as an efficient metal-free catalyst for H 2 S removal in super-Claus reaction. The …
paper plays as an efficient metal-free catalyst for H 2 S removal in super-Claus reaction. The …
Decoration of multi-walled carbon nanotubes with CuO/Cu2O nanoparticles for selective sensing of H2S gas
In this study, multi-walled carbon nanotubes (MWCNTs) were decorated by the Cu 2 O/CuO
nanoparticles for gas sensing. For this purpose, Cu layer with different thicknesses of 3, 6 …
nanoparticles for gas sensing. For this purpose, Cu layer with different thicknesses of 3, 6 …
A silver nanoparticle-anchored UiO-66 (Zr) metal–organic framework (MOF)-based capacitive H 2 S gas sensor
Hydrogen sulfide (H2S) is a highly poisonous gas; if present in a workplace, it must be
identified immediately at concentrations greater than 10 ppm. Although there are numerous …
identified immediately at concentrations greater than 10 ppm. Although there are numerous …
[HTML][HTML] Exploring the thermophysical properties of natural deep eutectic solvents for gas capture applications: a comprehensive review
With the intensifying challenge of global warming driven largely by anthropogenic activities,
effective greenhouse gas capture techniques are critical. This paper focuses on the role of …
effective greenhouse gas capture techniques are critical. This paper focuses on the role of …
Fabrication and characterization of cellulose acetate-based nanofibers and nanofilms for H2S gas sensing application
Electrospun nanofibers and solution-casting nanofilms were produced from an
environmentally friendly cellulose acetate (CA) blended with glycerol (as an ionic liquid (IL)) …
environmentally friendly cellulose acetate (CA) blended with glycerol (as an ionic liquid (IL)) …