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Nanofeather ruthenium nitride electrodes for electrochemical capacitors
Nature Materials, Nature Publishing Group, 27-02-2024Compte-rendu et recension critique d'ouvragetexte intégral -
Nanostructured MnO2 Films for 3D Micro‐Supercapacitors: From New Insights of the Growth Mechanism to the Fine Tuning of Areal Capacitance Values
Journal of The Electrochemical Society, Electrochemical Society, 22-03-2023, 170; 3, 030530Compte-rendu et recension critique d'ouvragetexte intégral -
Solid-state 3D micro-supercapacitors based on ionogel electrolyte: Influence of adding lithium and sodium salts to the ionic liquid
Energy Storage Materials, Elsevier, 09-2022, 50, 606-617Compte-rendu et recension critique d'ouvrage -
Novel insights into the charge storage mechanism in pseudocapacitive vanadium nitride thick films for high-performance on-chip micro-supercapacitors
Energy & Environmental Science, Royal Society of Chemistry, 01-03-2020, 13; 3, 949-957Compte-rendu et recension critique d'ouvragetexte intégral -
Enhancing Cycling Stability and Specific Capacitance of Vanadium Nitride Electrodes by Tuning Electrolyte Composition
Journal of The Electrochemical Society, Electrochemical Society, 06-06-2022, 169; 6, 063503, 8 pagesCompte-rendu et recension critique d'ouvragetexte intégral -
In-Depth Investigation of Manganese Dioxide as Pseudocapacitive Electrode in Lithium- and Sodium-Doped Ionic Liquids
Journal of The Electrochemical Society, Electrochemical Society, 2023, 170; 10, 100531Compte-rendu et recension critique d'ouvragetexte intégral -
On chip MnO<sub>2</sub>-based 3D micro-supercapacitors with ultra-high areal energy density
Energy Storage Materials, Elsevier, 2021, 38, 520-527Compte-rendu et recension critique d'ouvragetexte intégral