The CO sensing properties of a micro thermoelectric gas sensor (micro-TGS) with a double AuPtPd/SnOâ and Pt/α-AlâOâ catalyst were investigated. While several nanometer sized Pt and Pd particles were uniformly dispersed on SnOâ, the Au particles were aggregated as particles measuring >10 nm in diameter. In situ diffuse reflectance Fourier transform Infrared spectroscopy (DRIFT) analysis of the catalyst showed a CO adsorption peak on Pt and Pd, but no clear peak corresponding to the interaction between CO and Au was detected. Up to 200 °C, CO combustion was more temperature dependent than that of Hâ, while Hâ combustion was activated by repeated exposure to Hâ gas during the periodic gas test. Selective CO sensing of the micro-TGS against Hâ was attempted using a double catalyst structure with 0.3-30 wt% Pt/α-AlâOâ as a counterpart combustion catalyst. The sensor output of the micro-TGS decreased with increasing Pt content in the Pt/α-AlâOâ catalyst, by cancelling out the combustion heat from the AuPtPd/SnOâ catalyst. In addition, the AuPtPd/SnOâ and 0.3 wt% Pt/α-AlâOâ double catalyst sensor showed good and selective CO detection. We therefore demonstrated that our micro-TGS with double catalyst structure is useful for controlling the gas selectivity of CO against Hâ.
CO Sensing Performance of a Micro Thermoelectric Gas Sensor with AuPtPd/SnOâ Catalyst and Effects of a Double Catalyst Structure with Pt/α-AlâOâ.
阅读:3
作者:Goto Tomoyo, Itoh Toshio, Akamatsu Takafumi, Shin Woosuck
| 期刊: | Sensors | 影响因子: | 3.500 |
| 时间: | 2015 | 起止号: | 2015 Dec 15; 15(12):31687-98 |
| doi: | 10.3390/s151229873 | ||
特别声明
1、本文转载旨在传播信息,不代表本网站观点,亦不对其内容的真实性承担责任。
2、其他媒体、网站或个人若从本网站转载使用,必须保留本网站注明的“来源”,并自行承担包括版权在内的相关法律责任。
3、如作者不希望本文被转载,或需洽谈转载稿费等事宜,请及时与本网站联系。
4、此外,如需投稿,也可通过邮箱info@biocloudy.com与我们取得联系。
