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Fast Direct Electron Transfer Reaction of Laccase at Biosurfactant-Modified Single-Walled Carbon Nanotubes

発表形態:
招待講演・特別講演(学会シンポジウム等での講演を含む)
主要業績:
主要業績
単著・共著:
単著
発表年月:
2016年09月
DOI:
会議属性:
国際会議(国内開催を含む)
査読:
有り
リンク情報:

日本語フィールド

著者:
M. Tominaga
題名:
Fast Direct Electron Transfer Reaction of Laccase at Biosurfactant-Modified Single-Walled Carbon Nanotubes
発表情報:
Abstracts of France-Japan Meeting on (bio)-functionalization of nanostructured carbon and (bio)-electrocatalytic applications, University of Grenoble Aopes, Grenoble Alpes, France ページ: 12
キーワード:
概要:
Direct electron transfer (DET) reaction between multicopper oxidases, especially laccase (Lac) and bilirubin oxidase, and a carbon electrode has been widely studied as fuel cell electrode for oxygen reduction in an enzymatic bio-cathode. Great effort has been directed toward studying the design of electrode interface to be given suitable enzyme molecular orientation for the DET reaction. The electrode interface modified with an organic compound such as anthracene has gave the enhanced bioelectrocatalytic current of Lac.1 Here, we present acceleration of the DET of Lac with the interface of single-walled carbon nanotubes (SWCNTs) modified with steroid-type biosurfactants.
抄録:

英語フィールド

Author:
M. Tominaga
Title:
Fast Direct Electron Transfer Reaction of Laccase at Biosurfactant-Modified Single-Walled Carbon Nanotubes
Announcement information:
Abstracts of France-Japan Meeting on (bio)-functionalization of nanostructured carbon and (bio)-electrocatalytic applications, University of Grenoble Aopes, Grenoble Alpes, France Page: 12
An abstract:
Direct electron transfer (DET) reaction between multicopper oxidases, especially laccase (Lac) and bilirubin oxidase, and a carbon electrode has been widely studied as fuel cell electrode for oxygen reduction in an enzymatic bio-cathode. Great effort has been directed toward studying the design of electrode interface to be given suitable enzyme molecular orientation for the DET reaction. The electrode interface modified with an organic compound such as anthracene has gave the enhanced bioelectrocatalytic current of Lac.1 Here, we present acceleration of the DET of Lac with the interface of single-walled carbon nanotubes (SWCNTs) modified with steroid-type biosurfactants.


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