The content of volatile organic compounds (VOCs) in the atmosphere will endanger the health and safety of human beings which makes it very important to develop a simple and rapid method for the determination of gas pollutants. Based on this, a new type of gas sensor was proposed for the detection of trichloroethylene in air. PEG200/ZnO nanocomposite were prepared by hydrothermal method. The materials were characterized by scanning electron microscope, X-ray energy spectrum and fourier infrared spectrum. The high selectivity of the materials was verified by using the cataluminescence (CTL) intensity of 9 kinds of VOCs on the surface of the materials as a reference. The results show that trichloroethylene can produce CTL response on the surfa...
The detection of trichloroethylene has attracted much attention because it has an important effect o...
This study describes novel work on the use of UV-light emitting diodes (LEDs) to enhance the room te...
The low operating temperature of nanowire gas sensors along with their high surface-to-volume ratio ...
Recognition of volatile organic compounds (VOCs) is a hot topic full of challenge from the perspecti...
Abstract: The cataluminescence (CTL) of benzene and the benzene homologues toluene and xylene on nan...
Volatile organic compounds (VOCs) have been considered severe risks to human health. Gas sensors for...
The cataluminescence (CTL) of benzene and the benzene homologues tolueneand xylene on nanosized γ–Al...
In this paper, a novel cataluminescence (CTL)-based sensor array consisting of nine types of catalyt...
Lung cancer being one of the most prevalent cause of death worldwide has been extensively studied an...
The detection and identification of volatile organic compounds (VOCs) is one of the most serious sub...
Combining plasma activation and cross-reactivity of sensor array, we have developed a plasma-assiste...
Graduation date: 2012ZnO nanowires (NWs) are good candidates for chemical sensing because of their h...
ristine and electrochemically Pd-modified ZnO nanorods (ZnO NRs) were proposed as active sensing lay...
This contribution focuses on ZnO-based gas sensors with outstanding performances in the detection of...
Cataluminescence-based sensors do not require external light sources and complex circuitry, which en...
The detection of trichloroethylene has attracted much attention because it has an important effect o...
This study describes novel work on the use of UV-light emitting diodes (LEDs) to enhance the room te...
The low operating temperature of nanowire gas sensors along with their high surface-to-volume ratio ...
Recognition of volatile organic compounds (VOCs) is a hot topic full of challenge from the perspecti...
Abstract: The cataluminescence (CTL) of benzene and the benzene homologues toluene and xylene on nan...
Volatile organic compounds (VOCs) have been considered severe risks to human health. Gas sensors for...
The cataluminescence (CTL) of benzene and the benzene homologues tolueneand xylene on nanosized γ–Al...
In this paper, a novel cataluminescence (CTL)-based sensor array consisting of nine types of catalyt...
Lung cancer being one of the most prevalent cause of death worldwide has been extensively studied an...
The detection and identification of volatile organic compounds (VOCs) is one of the most serious sub...
Combining plasma activation and cross-reactivity of sensor array, we have developed a plasma-assiste...
Graduation date: 2012ZnO nanowires (NWs) are good candidates for chemical sensing because of their h...
ristine and electrochemically Pd-modified ZnO nanorods (ZnO NRs) were proposed as active sensing lay...
This contribution focuses on ZnO-based gas sensors with outstanding performances in the detection of...
Cataluminescence-based sensors do not require external light sources and complex circuitry, which en...
The detection of trichloroethylene has attracted much attention because it has an important effect o...
This study describes novel work on the use of UV-light emitting diodes (LEDs) to enhance the room te...
The low operating temperature of nanowire gas sensors along with their high surface-to-volume ratio ...