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Dive into the research topics where Agnese Birrozzi is active.

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Featured researches published by Agnese Birrozzi.


ACS Applied Materials & Interfaces | 2018

Comparative Analysis of Aqueous Binders for High-Energy Li-Rich NMC as a Lithium-Ion Cathode and the Impact of Adding Phosphoric Acid

Arefeh Kazzazi; Dominic Bresser; Agnese Birrozzi; Jan von Zamory; Maral Hekmatfar; Stefano Passerini

Even though electrochemically inactive, the binding agent in lithium-ion electrodes substantially contributes to the performance metrics such as the achievable capacity, rate capability, and cycling stability. Herein, we present an in-depth comparative analysis of three different aqueous binding agents, allowing for the replacement of the toxic N-methyl-2-pyrrolidone as the processing solvent, for high-energy Li1.2Ni0.16Mn0.56Co0.08O2 (Li-rich NMC or LR-NMC) as a potential next-generation cathode material. The impact of the binding agents, sodium carboxymethyl cellulose, sodium alginate, and commercial TRD202A (TRD), and the related chemical reactions occurring during the electrode coating process on the electrode morphology and cycling performance is investigated. In particular, the role of phosphoric acid in avoiding the aluminum current collector corrosion and stabilizing the LR-NMC/electrolyte interface as well as its chemical interaction with the binder is investigated, providing an explanation for the observed differences in the electrochemical performance.


Journal of The Electrochemical Society | 2015

Scaling up “Nano” Li4Ti5O12 for High-Power Lithium-Ion Anodes Using Large Scale Flame Spray Pyrolysis

Agnese Birrozzi; Mark Copley; Jan von Zamory; Marta Pasqualini; Silvia Calcaterra; Francesco Nobili; Andrea Di Cicco; Hanna Rajantie; Martha Briceno; Edward Bilbé; Laura Cabo-Fernandez; Laurence J. Hardwick; Dominic Bresser; Stefano Passerini


Journal of Power Sources | 2016

Beneficial effect of propane sultone and tris(trimethylsilyl) borate as electrolyte additives on the cycling stability of the lithium rich nickel manganese cobalt (NMC) oxide

Agnese Birrozzi; Nina Laszczynski; Maral Hekmatfar; Jan von Zamory; Guinevere A. Giffin; Stefano Passerini


Journal of Materials Chemistry | 2016

Effect of coatings on the green electrode processing and cycling behaviour of LiCoPO4

Nina Laszczynski; Agnese Birrozzi; Krzysztof Jerzy Maranski; Mark Copley; Manfred Erwin Schuster; Stefano Passerini


ChemElectroChem | 2017

Graphene/V2O5 Cryogel Composite As a High-Energy Cathode Material For Lithium-Ion Batteries

Fabio Maroni; Agnese Birrozzi; Gilberto Carbonari; F. Croce; Roberto Tossici; Stefano Passerini; Francesco Nobili


Applied Surface Science | 2018

Binder-induced surface structure evolution effects on Li-ion battery performance

S. J. Rezvani; Marta Pasqualini; Agnieszka Witkowska; R. Gunnella; Agnese Birrozzi; Marco Minicucci; H. Rajantie; Mark Copley; Francesco Nobili; A. Di Cicco


Electrochimica Acta | 2018

Synthesis and characterization of Si nanoparticles wrapped by V 2 O 5 nanosheets as a composite anode material for lithium-ion batteries

Gilberto Carbonari; Fabio Maroni; Agnese Birrozzi; Roberto Tossici; F. Croce; Francesco Nobili


Archive | 2017

Abschlussbericht zum Projekt "NovaCap"

Sonia Dsoke; Fachgebiet Elektrochemische Materialentwicklung Zentrum Für Sonnenenergie Und Wasserstoff-Forschung Baden-Württemberg; Marco Secchiaroli; Hai-Yen Tran; Emanuele Gucciardi; Agnese Birrozzi; Xu Tian


ChemElectroChem | 2017

Inside Back Cover: Graphene/V2 O5 Cryogel Composite As a High-Energy Cathode Material For Lithium-Ion Batteries (ChemElectroChem 3/2017)

Fabio Maroni; Agnese Birrozzi; Gilberto Carbonari; F. Croce; Roberto Tossici; Stefano Passerini; Francesco Nobili


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

(Invited) Electrolyte Additives for High-Voltage Lithium-Ion Battery Cathodes

Stefano Passerini; Agnese Birrozzi

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Stefano Passerini

Karlsruhe Institute of Technology

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F. Croce

Sapienza University of Rome

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