Yu Binwei, Fu Yongming, Wang Penglei, Zhao Yayu, Xing Lili, Xue Xinyu
College of Sciences, Northeastern University, Shenyang, 110004, China.
Phys Chem Chem Phys. 2015 Apr 28;17(16):10856-60. doi: 10.1039/c5cp00893j.
Highly sensitive humidity sensing has been realized from a Cd-doped ZnO nanowire (NW) nanogenerator (NG) as a self-powered/active gas sensor. The piezoelectric output of the device acts not only as a power source, but also as a response signal to the relative humidity (RH) in the environment. The response of Cd-ZnO (1 : 10) NWs reached up to 85.7 upon exposure to 70% relative humidity, much higher than that of undoped ZnO NWs. Cd dopant can increase the number of oxygen vacancies in the NWs, resulting in more adsorption sites on the surface of the NWs. Upon exposure to a humid environment, a large amount of water molecules can displace the adsorbed oxygen ions on the surface of Cd-ZnO NWs. This procedure can influence the carrier density in Cd-ZnO NWs and vary the screening effect on the piezoelectric output. Our study can stimulate a research trend on exploring composite materials for piezo-gas sensing.
通过将掺镉的氧化锌纳米线(NW)纳米发电机(NG)用作自供电/有源气体传感器,已实现了高灵敏度湿度传感。该器件的压电输出不仅作为电源,还作为对环境中相对湿度(RH)的响应信号。在暴露于70%相对湿度时,Cd-ZnO(1∶10)纳米线的响应高达85.7,远高于未掺杂的氧化锌纳米线。镉掺杂剂可增加纳米线中的氧空位数量,从而在纳米线表面产生更多吸附位点。暴露于潮湿环境时,大量水分子会取代Cd-ZnO纳米线表面吸附的氧离子。此过程会影响Cd-ZnO纳米线中的载流子密度,并改变对压电输出的屏蔽效应。我们的研究可激发探索用于压电气体传感的复合材料的研究趋势。