We reported an organic room temperature (RT) NO2 sensor based on zinc phthalocyanine (ZnPc) nanofiber network. Compared with traditional polycrystalline ZnPc film devices, the sensors with ZnPc nanofiber network as the sensitive layer exhibit much better recovery characteristics, which could almost recover without any treatments at room temperature. In ZnPc nanofiber network, ultra-thin ZnPc single-crystal fibers not only improve charge transport but also make the charge exchanging process between NO2 and sensitive materials easier. It shortens the response and recovery time and stabilizes the baseline of devices. In addition, we also optimized the sensors by varying the scale of the ZnPc nanofiber. The device performance is obviously impro...
Semiconducting metal oxides can detect low concentrations of NO2 and other toxic gases, which have b...
This paper describes the development and the results of a Quartz Crystal Microbalance (QCM) sensor f...
Reports of the gas sensing properties of ZnSe are few, presumably because of the decomposition and o...
Room-temperature (RT) gas sensitivity of morphology-controlled free-standing hollow aluminum-doped z...
A room temperature nitrogen dioxide (NO(2)) chemresistor using 1.8 nm ultrathin vanadyl-phthalocyani...
This Research Article discusses the growth of polycrystalline, self-supporting ZnO nanofibers, which...
Ultrasensitive room temperature real-time NO2 sensors are highly desirable due to potential threats ...
International audienceNitrogen dioxide (NO2) is a major component of the outdoor air pollution. Micr...
The main object of this study is the improvement of the dynamics of NO2 sensors based on ZnO nanostr...
Room-temperature gas sensors are attracting attention because of their low power consumption, safe o...
International audienceIn this article, we describe a NO2 sensor consisting of a coating based on lut...
This Research Article discusses the growth of polycrystalline, self-supporting ZnO nanofibers, which...
A conductometric sensor based on ZnO nanoneedles for the detection of NO2 is described. The material...
High-response organic field-effect transistor (OFET)-based NO2 sensors were fabricated using the syn...
A heterojunction device which has good transport characteristics and low sensitivity is obtained thr...
Semiconducting metal oxides can detect low concentrations of NO2 and other toxic gases, which have b...
This paper describes the development and the results of a Quartz Crystal Microbalance (QCM) sensor f...
Reports of the gas sensing properties of ZnSe are few, presumably because of the decomposition and o...
Room-temperature (RT) gas sensitivity of morphology-controlled free-standing hollow aluminum-doped z...
A room temperature nitrogen dioxide (NO(2)) chemresistor using 1.8 nm ultrathin vanadyl-phthalocyani...
This Research Article discusses the growth of polycrystalline, self-supporting ZnO nanofibers, which...
Ultrasensitive room temperature real-time NO2 sensors are highly desirable due to potential threats ...
International audienceNitrogen dioxide (NO2) is a major component of the outdoor air pollution. Micr...
The main object of this study is the improvement of the dynamics of NO2 sensors based on ZnO nanostr...
Room-temperature gas sensors are attracting attention because of their low power consumption, safe o...
International audienceIn this article, we describe a NO2 sensor consisting of a coating based on lut...
This Research Article discusses the growth of polycrystalline, self-supporting ZnO nanofibers, which...
A conductometric sensor based on ZnO nanoneedles for the detection of NO2 is described. The material...
High-response organic field-effect transistor (OFET)-based NO2 sensors were fabricated using the syn...
A heterojunction device which has good transport characteristics and low sensitivity is obtained thr...
Semiconducting metal oxides can detect low concentrations of NO2 and other toxic gases, which have b...
This paper describes the development and the results of a Quartz Crystal Microbalance (QCM) sensor f...
Reports of the gas sensing properties of ZnSe are few, presumably because of the decomposition and o...