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CORDIS

Membrane-free Low cost high Density RFB

Rezultaty

Annual updates of the exploitation plan (M12, M24, M36)

This deliverable is an annual update of the exploitation plan D71 related to task 72

Annual reports of the Financial and technical progress (M12, M24, M36)

This deliverable is an annual report of the financial and technical progress following the structure described in task 84

Development of a website in which project dissemination can be executed as desired

As part of the dissemination plan, a website will be created for the MELODY project. The website will consist of internal pages only accessible by the Consortium partners and public pages.

Comprehensive, flexible, and validated (see task 3.3) computational multiphysics model, used to make design choices in task 3.2 and 3.3

This deliverable is a result of task 31 and will provide a model that can be used to make design choices in task 32 and 33

Publikacje

On the Stability of Pt‐Based Catalysts in HBr/Br 2 Solution

Autorzy: Qiang Liu, Hubert Meissel, Ilia Sadykov, Simon Jones, Nick Van Dijk, Przemyslaw Rzepka, Luca Artiglia, Marco Ranocchiari, Jeroen A. Bokhoven
Opublikowane w: Helvetica Chimica Acta, Numer 104/7, 2021, Strona(/y) 10, ISSN 0018-019X
Wydawca: Verlag Helvetica Chimica Acta
DOI: 10.1002/hlca.202100082

Sintering behavior of carbon-supported Pt nanoparticles and the effect of surface overcoating

Autorzy: Q. Lui, P. Rzepka, H, Frey, J. Tripp, A.Beck, L. Artiglia, M. Ranocchiari, J.A. van Bokhoven
Opublikowane w: Materials today Nano, Numer 20, december 2022, 100273, 2022, Strona(/y) 11, ISSN 2588-8420
Wydawca: Elsevier Ltd
DOI: 10.1016/j.mtnano.2022.100273

Enhanced surface area carbon cathodes for the hydrogen-bromine redox flow battery

Autorzy: David Trudgeon and Xiaohong Li
Opublikowane w: Efficient Redox Flow Batteries for Smart Grids and Renewable Energy Storage, Numer 8(12), 2022, Strona(/y) 276-289, ISSN 2313-0105
Wydawca: MDPI
DOI: 10.3390/batteries8120276

Electrochemical Testing of Carbon Materials as Bromine Electrodes for the Hydrogen-Bromine Redox Flow Battery

Autorzy: Yaksh Popat; David P. Trudgeon; Xiaohong Li; Peter Connor; Arunchander Asokan; Matthew E. Suss
Opublikowane w: Batteries, Numer Volume 8; Numer 10, page 166, 2022, Strona(/y) 14, ISSN 2313-0105
Wydawca: MDPI
DOI: 10.3390/batteries8100166

CarbonMaterialsas PositiveElectrodesin Bromine-BasedFlowBatteries

Autorzy: Yaksh Popat,David Trudgeon,Caiping Zhang,Frank C. Walsh,Peter Connor,Xiaohong Li
Opublikowane w: ChemPlusChem, Numer Volume87, Numer1 January 2022, e202100441, 2022, Strona(/y) 1-16, ISSN 2192-6506
Wydawca: Wiley-VCH Verlag
DOI: 10.1002/cplu.202100441

Resistance Breakdown of a Membraneless Hydrogen–Bromine Redox Flow Battery

Autorzy: Daniel Alfisi, Amit N. Shocron, Robert Gloukhovski, David A. Vermaas, Matthey E. Suss
Opublikowane w: ACS Sustainable chemical engineering, Numer 10,39, 2022, Strona(/y) 12985-12992, ISSN 2168-0485
Wydawca: American Chemical Society
DOI: 10.1021/acssuschemeng.2c02169

Catalyst overcoting engineering towards high performance electrocatalysis

Autorzy: Qiang Liu, Marco Ranocchiari, Jeroen van Bokhoven
Opublikowane w: Chemical Society Reviews, Numer 01-2022,51, 2022, Strona(/y) 188-236, ISSN 1460-4744
Wydawca: Royal society of chemistry
DOI: 10.1039/d1cs00270h

Feasibility of Producing Electricity, Hydrogen, and Chlorine via Reverse Electrodialysis

Autorzy: Ameya Ranade, Kaustub Singh, Alesandro Tamburini, Giorgia Micale, David A. Vermaas
Opublikowane w: Environmental Science & Technology, Numer 56,22, 2022, Strona(/y) 16062-16072, ISSN 0013-936X
Wydawca: American Chemical Society
DOI: 10.1021/acs.est.2c03407

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