Degradation mechanism of a high-performance real micro gas sensor, as determined by spatially resolved XAFS
Wada, Takahiro, Murata, Naoyoshi, Uehara, Hiromitsu, Suzuki, Takuya, Nitani, Hiroaki, Niwa, Yasuhiro, Uo, Motohiro, Asakura, Kiyotaka
Published in Physical chemistry chemical physics : PCCP (2016)
Published in Physical chemistry chemical physics : PCCP (2016)
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Improvement of a Real Gas-Sensor for the Origin of Methane Selectivity Degradation by µ-XAFS Investigation
Wada, Takahiro, Murata, Naoyoshi, Suzuki, Takuya, Uehara, Hiromitsu, Nitani, Hiroaki, Niwa, Yasuhiro, Uo, Motohiro, Asakura, Kiyotaka
Published in Nano-micro letters (01.07.2015)
Published in Nano-micro letters (01.07.2015)
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Structure of Atomically Dispersed Pt in a SnO2 Thin Film under Reaction Conditions: Origin of Its High Performance in Micro Electromechanical System Gas Sensor Catalysis
Murata, Naoyoshi, Suzuki, Takuya, Lin, Yunli, Nitani, Hiroaki, Niwa, Yasuhiro, Wada, Takahiro, Uo, Motohiro, Asakura, Kiyotaka
Published in ACS applied materials & interfaces (31.08.2022)
Published in ACS applied materials & interfaces (31.08.2022)
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Journal Article
Structure of Atomically Dispersed Pt in a SnO 2 Thin Film under Reaction Conditions: Origin of Its High Performance in Micro Electromechanical System Gas Sensor Catalysis
Murata, Naoyoshi, Suzuki, Takuya, Lin, Yunli, Nitani, Hiroaki, Niwa, Yasuhiro, Wada, Takahiro, Uo, Motohiro, Asakura, Kiyotaka
Published in ACS applied materials & interfaces (31.08.2022)
Published in ACS applied materials & interfaces (31.08.2022)
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Journal Article
Degradation mechanism of a high-performance real micro gas sensor, as determined by spatially resolved XAFSElectronic supplementary information (ESI) available: Fig. S1: calculation of the volume of the central and peripheral regions. Fig. S2: simulation results of the temperature distribution of the Pd/Al2O3 overlayer. Fig. S3: the normalized Pd K-edge XANES spectra of Pd foil, PdO and the α position with various deterioration degrees. See DOI: 10.1039/c6cp00065g
Wada, Takahiro, Murata, Naoyoshi, Uehara, Hiromitsu, Suzuki, Takuya, Nitani, Hiroaki, Niwa, Yasuhiro, Uo, Motohiro, Asakura, Kiyotaka
Year of Publication 02.03.2016
Year of Publication 02.03.2016
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Journal Article
A high-temperature in situ cell with a large solid angle for fluorescence X-ray absorption fine structure measurement
Murata, Naoyoshi, Kobayashi, Makoto, Okada, Yukari, Suzuki, Takuya, Nitani, Hiroaki, Niwa, Yasuhiro, Abe, Hitoshi, Wada, Takahiro, Mukai, Shingo, Uehara, Hiromitsu, Ariga, Hiroko, Takakusagi, Satoru, Asakura, Kiyotaka
Published in Review of scientific instruments (01.03.2015)
Published in Review of scientific instruments (01.03.2015)
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GAS ALARM AND GAS DETECTION METHOD
OKAMURA Makoto, OHNISHI Hisao, MURATA Naoyoshi, NONAKA Atsushi, SUZUKI Takuya, KAMIOKA Tsuyoshi
Year of Publication 09.08.2018
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Year of Publication 09.08.2018
Patent
GAS ALARM, CONTROL DEVICE, AND PROGRAM
OKAMURA Makoto, OHNISHI Hisao, MURATA Naoyoshi, NONAKA Atsushi, SUZUKI Takuya, KAMIOKA Tsuyoshi
Year of Publication 31.05.2018
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Year of Publication 31.05.2018
Patent
Gas alarm device and gas detection method
Murata, Naoyoshi, Ohnishi, Hisao, Suzuki, Takuya, Nonaka, Atsushi, Okamura, Makoto, Kamioka, Tsuyoshi
Year of Publication 13.07.2021
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Year of Publication 13.07.2021
Patent
Gas alarm, control device and program
Murata, Naoyoshi, Ohnishi, Hisao, Suzuki, Takuya, Nonaka, Atsushi, Okamura, Makoto, Kamioka, Tsuyoshi
Year of Publication 03.11.2020
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Year of Publication 03.11.2020
Patent
GAS ALARM, CONTROL DEVICE AND PROGRAM
OKAMURA, Makoto, KAMIOKA, Tsuyoshi, NONAKA, Atsushi, MURATA, Naoyoshi, OHNISHI, Hisao, SUZUKI, Takuya
Year of Publication 15.08.2019
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Year of Publication 15.08.2019
Patent