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- Kyoko Sugiyama
- Faculty of Pharmaceutical Science Tohoku Medical and Pharmaceutical University Sendai Japan
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- Fumiya Sato
- Faculty of Pharmaceutical Science Tohoku Medical and Pharmaceutical University Sendai Japan
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- Sachiko Komatsu
- Faculty of Pharmaceutical Science Tohoku Medical and Pharmaceutical University Sendai Japan
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- Toshio Kamijo
- Department of Creative Engineering National Institute of Technology, Tsuruoka College Tsuruoka Japan
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- Kentaro Yoshida
- School of Pharmaceutical Sciences Ohu University Koriyama Japan
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- Yusuke Kawabe
- Department of Electronics Graduate School of Engineering Nagoya University Nagoya Japan
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- Hiromi Nishikawa
- Nano Life Science Institute (WPI‐NanoLSI) Kanazawa University Kanazawa Japan
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- Tsutomu Fujimura
- Faculty of Pharmaceutical Science Tohoku Medical and Pharmaceutical University Sendai Japan
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- Yasufumi Takahashi
- Department of Electronics Graduate School of Engineering Nagoya University Nagoya Japan
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- Katsuhiko Sato
- Faculty of Pharmaceutical Science Tohoku Medical and Pharmaceutical University Sendai Japan
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説明
<jats:title>Abstract</jats:title><jats:p>In this study, glucose oxidase (GOx) was immobilized on the electrode surface by layer‐by‐layer and gel membrane technique and characterized the GOx immobilized film morphology, H<jats:sub>2</jats:sub>O<jats:sub>2</jats:sub> permeability, and glucose response. Concanavalin A (Con A)‐GOx multilayer electrodes showed higher glucose‐related current response than GOx‐bovine serum albumin gel membrane‐coated electrode, a common modification method. The thin thickness of the Con A/GOx multilayer film efficiently catalyzed the enzymatic reaction, and H<jats:sub>2</jats:sub>O<jats:sub>2</jats:sub> was produced near the electrode surface, resulting in an immediate electrode response.</jats:p>
収録刊行物
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- Electrochemical Science Advances
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Electrochemical Science Advances 4 (5), 2023-07-25
Wiley
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詳細情報 詳細情報について
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- CRID
- 1360021389796760320
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- ISSN
- 26985977
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- 資料種別
- journal article
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- データソース種別
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- Crossref
- KAKEN
- OpenAIRE