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Refinado por: assunto: Oxidation remover
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1
Direct formate fuel cells: A review
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Direct formate fuel cells: A review

An, L. ; Chen, R.

Journal of power sources, 2016-07, Vol.320, p.127-139 [Periódico revisado por pares]

Elsevier B.V

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2
Formic acid–Formate blended solution: A new fuel system with high oxidation activity
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Formic acid–Formate blended solution: A new fuel system with high oxidation activity

Gao, Yan-Yan ; Tan, Chun-Hui ; Ye-Ping, LI ; Guo, Jing ; Zhang, Shu-Yong

International journal of hydrogen energy, 2012-02, Vol.37 (4), p.3433-3437 [Periódico revisado por pares]

Kidlington: Elsevier Ltd

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3
Formate: an Energy Storage and Transport Bridge between Carbon Dioxide and a Formate Fuel Cell in a Single Device
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Formate: an Energy Storage and Transport Bridge between Carbon Dioxide and a Formate Fuel Cell in a Single Device

Vo, Tracy ; Purohit, Krutarth ; Nguyen, Christopher ; Biggs, Brenna ; Mayoral, Salvador ; Haan, John L.

ChemSusChem, 2015-11, Vol.8 (22), p.3853-3858 [Periódico revisado por pares]

Germany: Blackwell Publishing Ltd

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4
Performance characteristics of a passive direct formate fuel cell
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Performance characteristics of a passive direct formate fuel cell

Su, Xiangyu ; Pan, Zhefei ; An, Liang

International journal of energy research, 2019-10, Vol.43 (13), p.7433-7443, Article er.4775 [Periódico revisado por pares]

Bognor Regis: Hindawi Limited

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5
Study on the Oxidation Enhancement of Formic Acid and Formate Blended Fuel Solution on Pt Catalyst
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Study on the Oxidation Enhancement of Formic Acid and Formate Blended Fuel Solution on Pt Catalyst

Guo, J. ; Gao, Y.-Y. ; Tan, C.-H. ; Li, Y.-P. ; Zhao, S.-L. ; Bai, L.-Z. ; Zhang, S.-Y.

Fuel cells (Weinheim an der Bergstrasse, Germany), 2013-04, Vol.13 (2), p.167-172 [Periódico revisado por pares]

Weinheim: WILEY-VCH Verlag

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6
An integrated device to convert carbon dioxide to energy
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An integrated device to convert carbon dioxide to energy

Saric, Steven ; Biggs, Brenna ; Janbahan, Mika ; Hamilton, Ryan ; Do, Huy K. ; Mayoral, Salvador ; Haan, John L.

Applied energy, 2016-12, Vol.183, p.1346-1350 [Periódico revisado por pares]

Elsevier Ltd

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7
Effect of TiO2 and Synthesis Strategies on Formate Oxidation: Electrochemical and Fuel Cell Approaches
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Effect of TiO2 and Synthesis Strategies on Formate Oxidation: Electrochemical and Fuel Cell Approaches

Guimarães, Vitória Pistori ; Nandenha, Júlio ; Orzari, Luiz Otávio ; Fatibello-Filho, Orlando ; Neto, Almir Oliveira ; Janegitz, Bruno Campos ; Vicentini, Fernando Campanhã ; Assumpção, Mônica Helena Marcon Teixeira

Electrocatalysis, 2023-03, Vol.14 (2), p.221-231 [Periódico revisado por pares]

New York: Springer US

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8
Investigation of Earth-Abundant Oxygen Reduction Electrocatalysts for the Cathode of Passive Air-Breathing Direct Formate Fuel Cells
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Investigation of Earth-Abundant Oxygen Reduction Electrocatalysts for the Cathode of Passive Air-Breathing Direct Formate Fuel Cells

Oliveira, Francisca E R ; Galiote, Nelson A ; Lima, Fabio H B

Catalysts, 2018-08, Vol.8 (8), p.320 [Periódico revisado por pares]

Basel: MDPI AG

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9
Use of PtAu/C electrocatalysts toward formate oxidation: electrochemical and fuel cell considerations
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Use of PtAu/C electrocatalysts toward formate oxidation: electrochemical and fuel cell considerations

da Silva, Sirlane G. ; Silva, Júlio César M. ; Buzzo, Guilherme S. ; Neto, Almir O. ; Assumpção, Mônica H. M. T.

Materials for renewable and sustainable energy, 2016-11, Vol.5 (4), p.1-8, Article 15 [Periódico revisado por pares]

Berlin/Heidelberg: Springer Berlin Heidelberg

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10
Multi-walled carbon nanotube-supported Ni@Pd core–shell electrocatalyst for direct formate fuel cells
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Multi-walled carbon nanotube-supported Ni@Pd core–shell electrocatalyst for direct formate fuel cells

Abrari, Saeid ; Daneshvari-Esfahlan, Vahid ; Hosseini, Mir Ghasem ; Mahmoodi, Raana ; Hacker, Viktor

Journal of applied electrochemistry, 2022-04, Vol.52 (4), p.755-764 [Periódico revisado por pares]

Dordrecht: Springer Netherlands

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