Search Results - "Coustan, Laura"

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  1. 1

    Electrochemical behavior of platinum, gold and glassy carbon electrodes in water-in-salt electrolyte by Coustan, Laura, Shul, Galyna, Bélanger, Daniel

    Published in Electrochemistry communications (01-04-2017)
    “…Superconcentrated electrolytes, including water-in-salt solutions, are currently attracting major interest in the field of rechargeable batteries. These…”
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    Journal Article
  2. 2

    Faradaic contributions in the supercapacitive charge storage mechanisms of manganese dioxides by Coustan, Laura, Lannelongue, Pierre, Arcidiacono, Paul, Favier, Frédéric

    Published in Electrochimica acta (10-07-2016)
    “…Electrode materials based on four different manganese dioxides, amorphous, birnessite, crytpomelane and spinel were fabricated and their electrochemical…”
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    Journal Article
  3. 3

    New insight in the electrochemical behaviour of stainless steel electrode in water-in-salt electrolyte by Coustan, Laura, Zaghib, Karim, Bélanger, Daniel

    Published in Journal of power sources (30-09-2018)
    “…Aqueous electrolytes containing a very high concentration of salt are useful for improving the performance of aqueous rechargeable batteries. These…”
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    Journal Article
  4. 4

    Electrochemical activity of platinum, gold and glassy carbon electrodes in water-in-salt electrolyte by Coustan, Laura, Bélanger, Daniel

    “…The effect of potential cycling conditions on redox processes observed in the potential region of electrochemical stability window, between hydrogen and oxygen…”
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    Journal Article
  5. 5

    Biredox ionic liquids with solid-like redox density in the liquid state for high-energy supercapacitors by Mourad, Eléonore, Coustan, Laura, Lannelongue, Pierre, Zigah, Dodzi, Mehdi, Ahmad, Vioux, André, Freunberger, Stefan A., Favier, Frédéric, Fontaine, Olivier

    Published in Nature materials (01-04-2017)
    “…Kinetics of electrochemical reactions are several orders of magnitude slower in solids than in liquids as a result of the much lower ion diffusivity. Yet, the…”
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    Journal Article
  6. 6

    MnO2 as ink material for the fabrication of supercapacitor electrodes by Coustan, Laura, Comte, Annaig Le, Brousse, Thierry, Favier, Frédéric

    Published in Electrochimica acta (10-01-2015)
    “…With the objective of the formulation of ready-to-print stable water-based inks of supercapacitive MnO2, selected surfactants have been used as reactants for…”
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    Journal Article
  7. 7

    Thin Fiber-Based Separators for High-Rate Sodium Ion Batteries by Coustan, Laura, Tarascon, Jean-Marie, Laberty-Robert, Christel

    Published in ACS applied energy materials (23-12-2019)
    “…A thermally resistant, high-performance electrospun hybrid PVDF-HFP/SiO2 fiber-based separator (EHS) has been successfully fabricated and its performance for…”
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    Journal Article
  8. 8

    Biredox ionic liquids: electrochemical investigation and impact of ion size on electron transfer by Mourad, Eléonore, Coustan, Laura, Freunberger, Stefan A., Mehdi, Ahmad, Vioux, André, Favier, Frédérique, Fontaine, Olivier

    Published in Electrochimica acta (10-07-2016)
    “…[Display omitted] Redox ionic liquids consisting of ions bearing redox moieties are receiving increasing interest in electrochemical applications, as they…”
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  9. 9

    MnO sub(2) as ink material for the fabrication of supercapacitor electrodes by Coustan, Laura, Comte, Annaig Le, Brousse, Thierry, Favier, Frederic

    Published in Electrochimica acta (10-01-2015)
    “…With the objective of the formulation of ready-to-print stable water-based inks of supercapacitive MnO sub(2), selected surfactants have been used as reactants…”
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    Journal Article
  10. 10

    Biredox ionic liquids with solid-like redox density in the liquid state for high-energy supercapacitors by Mourad, Eléonore, Coustan, Laura, Lannelongue, Pierre, Zigah, Dodzi, Mehdi, Ahmad, Vioux, André, Freunberger, Stefan A, Favier, Frédéric, Fontaine, Olivier

    Published 30-11-2017
    “…Nature Materials 16, 446-453 (2017) Kinetics of electrochemical reactions are several orders of magnitude slower in solids than in liquids as a result of the…”
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    Journal Article