A two-dimensional (2D) CeO2-Pd-PDA/rGO heterojunction nanocomposite has been synthesised via an environmentally friendly, energy efficient, and facile wet chemical procedure and examined for hydrogen (H2) gas sensing application for the first time. The H2 gas sensing performance of the developed conductometric sensor has been extensively investigated under different operational conditions, including working temperature up to 200 °C, UV illumination, H2 concentrations from 50–6000 ppm, and relative humidity up to 30% RH. The developed ceria-based nanocomposite sensor was functional at a relatively low working temperature (100 °C), and its sensing properties were improved under UV illumination (365 nm). The sensor’s response towards 6000 ppm ...
High demand of semiconductor gas sensor works at low operating temperature to as low as 100 °C h...
SnO2 hollow nanospheres (HNS) were synthesized by a hydrothermal method using carbon nanospheres, an...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
This paper reports a novel hydrogen sensor based on an array of single suspended carbon nanowires (?...
This study proposes a reliable and self-powered hydrogen (H-2) gas sensor composed of a chemo-mechan...
Nanoscale devices take many advantages, including low power consumption for energy sav- ing, highly ...
We present a highly sensitive H2 sensor based on a single Pd-functionalized carbon nanowire suspende...
A room-temperature hydrogen gas (H2) sensor was successfully fabricated by dispersion of palladium n...
With increasing attention on hydrogen (H2) produced by renewable energy methods for transport and ot...
This study reports the development of a novel hydrogen gas sensor based on an array of single suspen...
The development of low-cost and high performing hydrogen gas sensors is important across many sector...
Hydrogen (H2) is a flammable gas, and even tiny leaks of H2 must be detected for safety. However, th...
Hydrogen (H2), as a chemical energy carrier, is a cleaner alternative to conventional fossil fuels w...
A polymer membrane-coated palladium (Pd) nanoparticle (NP)/single-layer graphene (SLG) hybrid sensor...
Developing high performance hydrogen (H_{2}) sensors is of utmost importance to facilitate the safe ...
High demand of semiconductor gas sensor works at low operating temperature to as low as 100 °C h...
SnO2 hollow nanospheres (HNS) were synthesized by a hydrothermal method using carbon nanospheres, an...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
This paper reports a novel hydrogen sensor based on an array of single suspended carbon nanowires (?...
This study proposes a reliable and self-powered hydrogen (H-2) gas sensor composed of a chemo-mechan...
Nanoscale devices take many advantages, including low power consumption for energy sav- ing, highly ...
We present a highly sensitive H2 sensor based on a single Pd-functionalized carbon nanowire suspende...
A room-temperature hydrogen gas (H2) sensor was successfully fabricated by dispersion of palladium n...
With increasing attention on hydrogen (H2) produced by renewable energy methods for transport and ot...
This study reports the development of a novel hydrogen gas sensor based on an array of single suspen...
The development of low-cost and high performing hydrogen gas sensors is important across many sector...
Hydrogen (H2) is a flammable gas, and even tiny leaks of H2 must be detected for safety. However, th...
Hydrogen (H2), as a chemical energy carrier, is a cleaner alternative to conventional fossil fuels w...
A polymer membrane-coated palladium (Pd) nanoparticle (NP)/single-layer graphene (SLG) hybrid sensor...
Developing high performance hydrogen (H_{2}) sensors is of utmost importance to facilitate the safe ...
High demand of semiconductor gas sensor works at low operating temperature to as low as 100 °C h...
SnO2 hollow nanospheres (HNS) were synthesized by a hydrothermal method using carbon nanospheres, an...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...