Presentation 2022-01-07
Development of Anode Catalysts for High Power Sugar Fuel Cells
Keiichi Kaneto, Sadahito Uto,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Glucose/KOH fuel cells have been fabricated using PEDOT*PSS, SWCNT, PtRu composites for anode catalysts. From the optimization of the fuel cell by varying oxygen, glucose, and KOH concentrations, the highest output power of 60 mWcm-2 has been obtained. Turning Mabuchi motor and lightening of LED are demonstrated using the high-power glucose fuel cells. A hypothesis, that glucose is oxidized to gluconic acid via the chain structure of glucose and 2 electron model, indicates that the coulombic efficiency of 89% and energetic efficiency of 45% for lightening LED are obtained.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Fuel cell / Glucose / PEDOT*PSS / Reducing sugars / Carbon nano tube / Conducting polymer / Sucrose / Non-enzymatic
Paper # OME2021-50
Date of Issue 2021-12-31 (OME)

Conference Information
Committee OME
Conference Date 2022/1/7(1days)
Place (in Japanese) (See Japanese page)
Place (in English) CENTRAL ELECTRIC CLUB
Topics (in Japanese) (See Japanese page)
Topics (in English) Organic devices, sensors, etc.
Chair Toshiki Yamada(NICT)
Vice Chair Eiji Itoh(Shinshu Univ.)
Secretary Eiji Itoh(Osaka Univ.)
Assistant Yoshiyuki Seike(Aichi Inst. of Tech.) / Akira Baba(Niigata Univ.)

Paper Information
Registration To Technical Committee on Organic Molecular Electronics
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Development of Anode Catalysts for High Power Sugar Fuel Cells
Sub Title (in English) Composites of Conducting Polymers, Carbon Nano Tube and PtRu
Keyword(1) Fuel cell
Keyword(2) Glucose
Keyword(3) PEDOT*PSS
Keyword(4) Reducing sugars
Keyword(5) Carbon nano tube
Keyword(6) Conducting polymer
Keyword(7) Sucrose
Keyword(8) Non-enzymatic
1st Author's Name Keiichi Kaneto
1st Author's Affiliation Osaka Institute of Technology(OIT)
2nd Author's Name Sadahito Uto
2nd Author's Affiliation Osaka Institute of Technology(OIT)
Date 2022-01-07
Paper # OME2021-50
Volume (vol) vol.121
Number (no) OME-316
Page pp.pp.14-19(OME),
#Pages 6
Date of Issue 2021-12-31 (OME)