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由人体手指运动驱动的Pd/ZnO纳米阵列纳米发电机实现室温自供电乙醇传感

Room-temperature self-powered ethanol sensing of a Pd/ZnO nanoarray nanogenerator driven by human finger movement.

作者信息

Lin Yujie, Deng Ping, Nie Yuxin, Hu Yuefeng, Xing Lili, Zhang Yan, Xue Xinyu

机构信息

College of Sciences, Northeastern University, Shenyang 110004, China.

出版信息

Nanoscale. 2014 May 7;6(9):4604-10. doi: 10.1039/c3nr06809a.

Abstract

A flexible room-temperature self-powered active ethanol sensor has been realized from a Pd/ZnO nanoarray nanogenerator. Pd nanoparticles are uniformly loaded on the whole surface of the ZnO nanowire arrays by a simple hydrothermal method. The piezoelectric output of the Pd/ZnO nanowire arrays can act as both the power source of the device and the room-temperature ethanol sensing signal. Upon exposure to 800 ppm ethanol gas at room temperature, the piezoelectric output voltage decreased from 0.52 V (in air) to 0.25 V. Such a room-temperature self-powered ethanol sensing behavior can be attributed to the catalytic effect of Pd, the Schottky barrier at the Pd/ZnO interface, and the piezotronics effect of the ZnO nanowires. Moreover, this flexible device can be driven by tiny mechanic energy in the environment, such as human finger movement. The present results can stimulate a research trend on designing new material systems and device structures in self-powered ethanol sensing at room temperature.

摘要

一种基于钯/氧化锌纳米阵列纳米发电机的柔性室温自供电有源乙醇传感器已被实现。通过简单的水热法将钯纳米颗粒均匀地负载在氧化锌纳米线阵列的整个表面上。钯/氧化锌纳米线阵列的压电输出既可以作为器件的电源,也可以作为室温乙醇传感信号。在室温下暴露于800 ppm乙醇气体时,压电输出电压从0.52 V(在空气中)降至0.25 V。这种室温自供电乙醇传感行为可归因于钯的催化作用、钯/氧化锌界面处的肖特基势垒以及氧化锌纳米线的压电电子效应。此外,这种柔性器件可以由环境中的微小机械能驱动,例如人类手指的移动。目前的结果可以激发在室温自供电乙醇传感中设计新型材料系统和器件结构的研究趋势。

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