AbstractHydrogen (H2) is a clean, portable and potentially inexhaustible energy source with the potential to become a panacea for clean energy generation. However, H2 has wide explosive concentration range (4–75 vol%), low ignition energy (0.02mJ) and large flame propagation velocity. Due to its ultra small molecular size, confinement and containment of this gas are difficult. Moreover, H2 cannot be detected by human senses because it is colorless and odorless. Thus, accurate detection and monitoring of hydrogen is an important issue. This presentation is a review of hydrogen gas sensors based on semiconductor metal oxides synthesized by a variety of synthetic techniques, namely RF magnetron sputtering, reactive RF sputtering, electro-spinn...
An alternative energy source to petroleum is hydrogen fuel-cells, and better hydrogen sensors are ne...
We report here on the results of a study on the response of copper oxide based low-power MEMS therma...
There is a growing interest in developing efficient and economically viable hydrogen (H2) sensors f...
AbstractHydrogen (H2) is a clean, portable and potentially inexhaustible energy source with the pote...
Traditional methods of synthesis of metal-oxide gas sensing materials for semiconductor sensors are ...
The research team has synthesized a semiconductor material that can be used as a sensitive detector ...
Detection of explosive gas leaks such as hydrogen (H2) becomes key element in the wake of counter-te...
In this dissertation, three types of microfabricated solid-state sensors had been designed and devel...
The noxious gas sensors were developed successfully using flame-spray-made SnO2 nanoparticles as the...
In this thesis, novel optical hydrogen (H2) sensors based on manganese dioxide (MnO2), zinc oxide ...
As gas prices continue to rise and fossil fuels pollute our environment, various alternative fuel so...
In this study we report for the first time detailed analysis of a p-type copper oxide based MEMS gas...
Metal-oxide semiconductor ZnO thin films were prepared on glass slides by spray pyrolysis technique ...
The application of gas sensors in breath analysis is an important trend in the early diagnostics of ...
With increasing attention on hydrogen (H2) produced by renewable energy methods for transport and ot...
An alternative energy source to petroleum is hydrogen fuel-cells, and better hydrogen sensors are ne...
We report here on the results of a study on the response of copper oxide based low-power MEMS therma...
There is a growing interest in developing efficient and economically viable hydrogen (H2) sensors f...
AbstractHydrogen (H2) is a clean, portable and potentially inexhaustible energy source with the pote...
Traditional methods of synthesis of metal-oxide gas sensing materials for semiconductor sensors are ...
The research team has synthesized a semiconductor material that can be used as a sensitive detector ...
Detection of explosive gas leaks such as hydrogen (H2) becomes key element in the wake of counter-te...
In this dissertation, three types of microfabricated solid-state sensors had been designed and devel...
The noxious gas sensors were developed successfully using flame-spray-made SnO2 nanoparticles as the...
In this thesis, novel optical hydrogen (H2) sensors based on manganese dioxide (MnO2), zinc oxide ...
As gas prices continue to rise and fossil fuels pollute our environment, various alternative fuel so...
In this study we report for the first time detailed analysis of a p-type copper oxide based MEMS gas...
Metal-oxide semiconductor ZnO thin films were prepared on glass slides by spray pyrolysis technique ...
The application of gas sensors in breath analysis is an important trend in the early diagnostics of ...
With increasing attention on hydrogen (H2) produced by renewable energy methods for transport and ot...
An alternative energy source to petroleum is hydrogen fuel-cells, and better hydrogen sensors are ne...
We report here on the results of a study on the response of copper oxide based low-power MEMS therma...
There is a growing interest in developing efficient and economically viable hydrogen (H2) sensors f...