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用于高温应用的作为 NO2 传感器的悬浮 GaN 纳米线。

Suspended GaN nanowires as NO2 sensor for high temperature applications.

机构信息

School of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749, Republic of Korea.

出版信息

Analyst. 2013 Apr 21;138(8):2432-7. doi: 10.1039/c3an36917j.

Abstract

We propose a gas sensor operable over a wide temperature range and using suspended GaN nanowires functionalized with Pt-Pd. The sensor is batch-fabricated by directly integrating the GaN nanowires onto batch-processed silicon microelectrodes in parallel. The high thermal stability of the sensor originates from a large band gap of GaN nanowires that enables the detection of NO2 gas at an elevated temperature of up to 350 °C without a decrease in responsiveness. Exposed to NO2 at 100-1000 ppm at 350 °C, the sensor shows a linear increment in relative response with respect to the change in gas concentration. The sensor results in a two- to four-fold increase in responsiveness to NO2 at 100 ppm compared to NH3 at 100 ppm and CO2 at 1000 ppm. The nanowires suspended over a substrate provide increased surface area that could interact with gas molecules for enhanced responsiveness, and prevent any unnecessary interactions between the nanowires and the substrate.

摘要

我们提出了一种可在宽温度范围内工作的气体传感器,该传感器使用功能化的 Pt-Pd 悬浮 GaN 纳米线。该传感器通过直接将 GaN 纳米线集成到平行的批量处理硅微电极上来批量制造。传感器的高耐热性源于 GaN 纳米线的大带隙,这使得可以在高达 350°C 的高温下检测 NO2 气体,而不会降低响应性。在 350°C 下,将传感器暴露于 100-1000 ppm 的 NO2 中,其相对响应会随气体浓度的变化而线性增加。与 100 ppm 的 NH3 和 1000 ppm 的 CO2 相比,该传感器对 100 ppm 的 NO2 的响应提高了两到四倍。悬浮在基底上的纳米线提供了更大的表面积,可与气体分子相互作用以提高响应性,并防止纳米线与基底之间发生任何不必要的相互作用。

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