Zhao Yayu, Lai Xuan, Deng Ping, Nie Yuxin, Zhang Yan, Xing Lili, Xue Xinyu
College of Sciences, Northeastern University, Shenyang 110004, People's Republic of China.
Nanotechnology. 2014 Mar 21;25(11):115502. doi: 10.1088/0957-4484/25/11/115502. Epub 2014 Feb 24.
A self-powered gas sensor that can actively detect ethanol at room temperature has been realized from a Pt/ZnO nanoarray nanogenerator. Pt nanoparticles are uniformly distributed on the whole surface of ZnO nanowires. The piezoelectric output of Pt/ZnO nanoarrays can act not only as a power source, but also as a response signal to ethanol at room temperature. Upon exposure to dry air and 1500 ppm ethanol at room temperature, the piezoelectric output of the device under the same compressive strain is 0.672 and 0.419 V, respectively. Moreover, a linear dependence of the sensitivity on the ethanol concentration is observed. Such a linear ethanol sensing at room temperature can be attributed to the atmosphere-dependent variety of the screen effect on the piezoelectric output of ZnO nanowires, the catalytic properties of Pt nanoparticles, and the Schottky barriers at Pt/ZnO interfaces. The present results can stimulate research in the direction of designing new material systems for self-powered room-temperature gas sensing.
一种能够在室温下主动检测乙醇的自供电气体传感器已由铂/氧化锌纳米阵列纳米发电机实现。铂纳米颗粒均匀分布在氧化锌纳米线的整个表面上。铂/氧化锌纳米阵列的压电输出不仅可以作为电源,还可以作为室温下对乙醇的响应信号。在室温下暴露于干燥空气和1500 ppm乙醇时,相同压缩应变下该器件的压电输出分别为0.672和0.419 V。此外,观察到灵敏度与乙醇浓度呈线性关系。这种室温下的线性乙醇传感可归因于氧化锌纳米线压电输出的屏蔽效应随气氛变化、铂纳米颗粒的催化性能以及铂/氧化锌界面处的肖特基势垒。目前的结果可以激发在设计用于自供电室温气体传感的新材料系统方向上的研究。