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電子書籍・電子雑誌Chemistry letters
Volume number46 (5)
Screen-pri...

Screen-printed, paper-based, array-type, origami biofuel cell

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Screen-printed, paper-based, array-type, origami biofuel cell

Persistent ID (NDL)
info:ndljp/pid/11478007
Material type
記事
Author
Isao Shitandaほか
Publisher
The Chemical Society of Japan
Publication date
2017-03-03
Material Format
Digital
Journal name
Chemistry letters 46(5)
Publication Page
-
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Summary, etc.:

<p>A paper-based, origami, glucose/O<sub>2</sub>, biofuel cell (PBFC) was constructed as an array of two individual cells by screen-printing. The fabr...

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Bibliographic Record

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Digital

Material Type
記事
Author/Editor
Isao Shitanda
Seiya Kato
Seiya Tsujimura
Publication, Distribution, etc.
Publication Date
2017-03-03
Publication Date (W3CDTF)
2017-03-03
Periodical title
Chemistry letters
No. or year of volume/issue
46(5)
Volume
46(5)
ISSN (Periodical Title)
1348-0715
ISSN-L (Periodical Title)
0366-7022
Text Language Code
eng
Persistent ID (NDL)
info:ndljp/pid/11478007
Collection (Materials For Handicapped People:1)
Collection (particular)
国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > 学術機関 > 学協会
Acquisition Basis
オンライン資料収集制度
Date Accepted (W3CDTF)
2020-04-02T20:54:50+09:00
Date Captured (W3CDTF)
2020-04-02
Format (IMT)
application/pdf
Access Restrictions
国立国会図書館内限定公開
Service for the Digitized Contents Transmission Service
図書館・個人送信対象外
Availability of remote photoduplication service
Periodical Title (Persistent ID (NDL))
info:ndljp/pid/11477997
Data Provider (Database)
国立国会図書館 : 国立国会図書館デジタルコレクション

Digital

Summary, etc.
<p>A paper-based, origami, glucose/O<sub>2</sub>, biofuel cell (PBFC) was constructed as an array of two individual cells by screen-printing. The fabricated PBFC, which modulated output voltage by paper folding, exhibited almost 1 V of open-circuit voltage without any booster circuit. The maximum output power density of the PBFC was 180 µW cm<sup>−2</sup>. This PBFC concept is highly applicable to the development of high-power, low-cost, and flexible energy-harvesting devices.</p>
DOI
10.1246/cl.170047
Access Restrictions
インターネット公開
Data Provider (Database)
科学技術振興機構 : J-STAGE

Digital

Summary, etc.
<p>A paper-based, origami, glucose/O<sub>2</sub>, biofuel cell (PBFC) was constructed as an array of two individual cells by screen-printing. The fabricated PBFC, which modulated output voltage by paper folding, exhibited almost 1 V of open-circuit voltage without any booster circuit. The maximum output power density of the PBFC was 180 µW cm<sup>−2</sup>. This PBFC concept is highly applicable to the development of high-power, low-cost, and flexible energy-harvesting devices.</p>
Access Restrictions
インターネット公開
Is Referenced By
Based disk-type
Ready-to-use paper biofuel cell driven by water
Paper-based lactate biofuel cell array with high power output
A screen-printed circular-type paper-based glucose/O2 biofuel cell
From fundamentals to applications of bioelectrocatalysis: bioelectrocatalytic reactions of FAD-dependent glucose dehydrogenase and bilirubin oxidase
High Capacity Lactate Biofuel Cell Using Enzyme Cascade without NAD
Toward self-powered real-time health monitoring of body fluid components based on improved enzymatic biofuel cells
High-performance, two-step/Bi-enzyme lactate biofuel cell with lactate oxidase and pyruvate oxidase
Totally organic electrical skin patch powered by flexible biobattery
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Toward Wearable Energy Storage Devices: Paper‐Based Biofuel Cells based on a Screen‐Printing Array Structure
High-power lactate/O2 enzymatic biofuel cell based on carbon cloth electrodes modified with MgO-templated carbon
Series-Connected Flexible Biobatteries for Higher Voltage Electrical Skin Patches
Self-Powered Diaper Sensor with Wireless Transmitter Powered by Paper-Based Biofuel Cell with Urine Glucose as Fuel
2.酵素に適したメソ孔/マクロ孔を有する多孔質炭素を用いたバイオセンサ・バイオ燃料電池
ウェアラブルバイオ電池の開発とヘルスモニタリングデバイスへの応用
2.体液成分の自己駆動リアルタイムモニタリング
Screen-printed paper-based three-electrode system with long-term stable and instantaneously usable reference electrode
References
Flexible, layered biofuel cells
Electrochemical Oxygen Reduction Catalyzed by Bilirubin Oxidase with the Aid of 2,2′-Azinobis(3-ethylbenzothiazolin-6-sulfonate) on a MgO-template Carbon Electrode
Paper-based enzymatic microfluidic fuel cell: From a two-stream flow device to a single-stream lateral flow strip
Epidermal Biofuel Cells: Energy Harvesting from Human Perspiration
From “cyborg” lobsters to a pacemaker powered by implantable biofuel cells
A self-powered microfluidic origami electrochemiluminescence biosensing platform
Stretchable biofuel cell with enzyme-modified conductive textiles
A paper-based microbial fuel cell: Instant battery for disposable diagnostic devices
Miniature biofuel cells
Enzyme Fuel Cell for Cellulolytic Sugar Conversion Employing FAD Glucose Dehydrogenase and Carbon Cloth Electrode Based on Direct Electron Transfer Principle~!2010-01-09~!2010-02-04~!2010-05-17~!
Enzyme-Modified Buckypaper for Bioelectrocatalysis
A miniature origami biofuel cell based on a consumed cathode
Contact lens biofuel cell tested in a synthetic tear solution
Paper electrodes for bioelectrochemistry: Biosensors and biofuel cells
Development of paper based electrodes: From air-breathing to paintable enzymatic cathodes
An enzymatic glucose/O2 biofuel cell operating in human blood
Bilirubin oxidases in bioelectrochemistry: Features and recent findings
Practical electricity generation from a paper based biofuel cell powered by glucose in ubiquitous liquids
Fabrication of Carbon‐Felt‐Based Multi‐Enzyme Immobilized Anodes to Oxidize Sucrose for Biofuel Cells
Wearable Biofuel Cells: A Review
Flexible and high-performance paper-based biofuel cells using printed porous carbon electrodes
Paper-based batteries: A review
A high-power glucose/oxygen biofuel cell operating under quiescent conditions
Electrochemical Impedance Study of Screen-printed Branch Structure Porous Carbon Electrode using MgO-templated Carbon and MgO Particle and its Application for Bilirubin Oxidase-immobilized Biocathode
積層型シート状酵素バイオ電池の構築
Glucose/O2 Biofuel Cell Operating at Physiological Conditions
Data Provider (Database)
国立情報学研究所 : CiNii Research
Bibliographic ID (NDL)
11478007
NAID
130005655632