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Dive into the research topics where David Ayme-Perrot is active.

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Featured researches published by David Ayme-Perrot.


Journal of Materials Chemistry | 2017

SnSb electrodes for Li-ion batteries: the electrochemical mechanism and capacity fading origins elucidated by using operando techniques

Philippe Antitomaso; Bernard Fraisse; Lorenzo Stievano; Stéphane Biscaglia; David Ayme-Perrot; Philippe Girard; Moulay Tahar Sougrati; Laure Monconduit

SnSb was synthesized by ultra-fast microwave solid-state synthesis. The lithiation/delithiation mechanism of SnSb was fully revisited through operando X-ray diffraction (XRD) and 119Sn Mossbauer spectroscopy. While many studies have underlined the attractive electrochemical performance of SnSb as the electrode material for Li-ion batteries, only a few of them have focused on the complex electrochemical mechanism. In this work, the complementary results of operando XRD and Mossbauer spectroscopy were used to fully investigate this complex electrochemical system. The alloying mechanism with the reversible formation of Li3Sb and LiySn lithiated phases was confirmed and complemented with additional information on the nature of the LiySn phases, namely Li2Sn5, LiSn, Li5Sn2 and Li7Sn2. Moreover, we demonstrated that the improved performance of SnSb compared to a physical mixture of Sn and Sb lies in the nature of the interfaces between the lithiated phases at the end of discharge. The progressive decrease of the availability/accessibility of Sn for the regeneration of SnSb at the end of the charge was also identified as a major failure mechanism for the long-term cycling stability of SnSb electrodes.


Archive | 2014

Novel sulphur-modified monolithic porous carbon-based material process for the preparation thereof and uses thereof in the storage and release of energy

David Ayme-Perrot; Marie Dieudonne; Philippe Sonntag; Anne-Caroline Pasquier


Archive | 2017

GELLED AQUEOUS POLYMER COMPOSITION, PYROLYSED CARBONATED COMPOSITION PRODUCED THEREFROM FOR A SUPERCAPACITOR ELECTRODE, AND METHODS FOR THE PRODUCTION THEREOF

Hugo Dorie; David Ayme-Perrot; Philippe Sonntag; Bruno Dufour


Angewandte Chemie | 2018

An Artificial Lithium Protective Layer that Enables the Use of Acetonitrile‐Based Electrolytes in Lithium Metal Batteries

Ngoc Duc Trinh; David Lepage; David Ayme-Perrot; Antonella Badia; Mickael Dollé; Dominic Rochefort


Archive | 2015

Composition polymérique aqueuse gélifiée, composition carbonée pyrolysée qui en est issue pour électrodes de supercondensateurs et leurs procédés de préparation

Hugo Dorie; David Ayme-Perrot; Bruno Dufour; Philippe Sonntag


Electrochimica Acta | 2018

On the high cycling stability of NbSnSb in Li-ion batteries at high temperature

Gaël Coquil; Moulay Tahar Sougrati; Stéphane Biscaglia; David Ayme-Perrot; Philippe-Franck Girard; Laure Monconduit


Archive | 2017

CURRENT CONDUCTING ELECTRODE AND METHOD FOR MANUFACTURING THE SAME

Bruno Dufour; David Ayme-Perrot; Dieudonne Marie; Sonntag Philippe


Archive | 2016

PROCESO PARA LA PREPARACIÓN DE UNA COMPOSICIÓN DE ELECTRODO QUE TIENE PROPIEDADES MAGNÉTICAS, UNA MEZCLA Y UNA COMPOSICIÓN QUE SE OBTIENEN POR MEDIO DE ESTE PROCESO, Y ESTE ELECTRODO EN SÍ

Nicolas Garois; Arnaud Prebe; Bruno Dufour; David Ayme-Perrot; Philippe Sonntag


Archive | 2016

PROCESS FOR PREPARING AN ELECTRODE COMPOSITION OR COMPOSITION WITH MAGNETIC PROPERTIES, MIXTURE AND COMPOSITION OBTAINED BY MEANS OF SAID PROCESS AND SAID ELECTRODE

Philippe Sonntag; David Ayme-Perrot; Bruno Dufour; Arnaud Prebe; Nicolas Garois


Archive | 2016

Ionogel forming a self-supported film of solid electrolyte, electrochemical device including same and method for manufacturing the ionogel

David Ayme-Perrot; Philippe Sonntag; Philippe-Franck Girard; Carole Cerclier; Bideau Jean Le; Thierry Brousse

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Philippe Sonntag

Sheffield Hallam University

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Laure Monconduit

Centre national de la recherche scientifique

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David Lepage

Université de Montréal

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Mickael Dollé

Université de Montréal

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Ngoc Duc Trinh

Université de Montréal

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