Degradation mechanism of a high-performance real micro gas sensor, as determined by spatially resolved XAFS

Author:

Wada Takahiro12345ORCID,Murata Naoyoshi6784,Uehara Hiromitsu6784,Suzuki Takuya6784,Nitani Hiroaki91011124,Niwa Yasuhiro91011124,Uo Motohiro1234,Asakura Kiyotaka1314154

Affiliation:

1. Graduate School of Medical and Dental Sciences

2. Tokyo Medical and Dental University

3. Tokyo 113-8549

4. Japan

5. ICAT Research Fellow

6. Corporate R & D Headquarters

7. Fuji Electric Co., Ltd

8. Tokyo 191-8502

9. Photon Factory

10. Institute of Materials Structure Science

11. High Energy Accelerator Research Organization (KEK)

12. Tsukuba 305-0801

13. Institute for Catalysis

14. Hokkaido University

15. Sapporo 001-0021

Abstract

Of late, battery-driven high-performance gas sensors have gained acceptability in practical usage, whose atomic-scale structure has been revealed by μ-fluorescence X-ray absorption fine structure analysis.

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Reference26 articles.

1. Ministry of Economy, Trade and Industry, Japan's Energy White Paper 2014 (Japanese), 2014, 144–154

2. 2010 Energy Statistics Yearbook, http://unstats.un.org/UNSD/energy/yearbook/default.htm, accessed Jun. 5

3. Metal Oxide Gas Sensors: Sensitivity and Influencing Factors

4. A micromachined gas sensor based on a catalytic thick film/SnO2 thin film bilayer and thin film heater

5. A micromachined gas sensor based on a catalytic thick film/SnO2 thin film bilayer and a thin film heater

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