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Energy Technology (Weinheim, Germany)|July 21, 2022
A Practical Guide for Using Electrochemical Dilatometry as Operando Tool in Battery and Supercapacitor ResearchInes Escher, Matthias Hahn, Guillermo A Ferrero, et al.Energy Technology (Weinheim, Germany)|April 1, 2021
Strategies for Alleviating Electrode Expansion of Graphite Electrodes in Sodium-Ion Batteries Followed by In Situ Electrochemical DilatometryInes Escher, Yuliia Kravets, Guillermo A Ferrero, et al.Angewandte Chemie (International Ed. in English)|August 9, 2018
Sulfur Spillover on Carbon Materials and Possible Impacts on Metal-Sulfur BatteriesLukas Medenbach, Ines Escher, Nicolas Köwitsch, et al.Chemical Reviews|March 15, 2025
Solvent Co-Intercalation Reactions for Batteries and BeyondGuillermo A Ferrero, Gustav Åvall, Knut Janßen, et al.Angewandte Chemie (International Ed. in English)|April 26, 2018
Editorial: The Energy Challenge, Batteries, and Why Simple Math MattersPhilipp AdelhelmAngewandte Chemie (International Ed. in English)|July 25, 2014
Use of graphite as a highly reversible electrode with superior cycle life for sodium-ion batteries by making use of co-intercalation phenomenaBirte Jache, Philipp AdelhelmTopics in Current Chemistry (Cham)|October 1, 2017
Cell Concepts of Metal-Sulfur Batteries (Metal = Li, Na, K, Mg): Strategies for Using Sulfur in Energy Storage ApplicationsLukas Medenbach, Philipp AdelhelmJournal of Computational Chemistry|June 30, 2019
Comparative study of density functionals for the description of lithium-graphite intercalation compoundsOlena Lenchuk, Philipp Adelhelm, Doreen MollenhauerChemsuschem|November 17, 2010
Nanosizing and nanoconfinement: new strategies towards meeting hydrogen storage goalsPetra E de Jongh, Philipp AdelhelmPhysical Chemistry Chemical Physics : PCCP|August 29, 2019
New insights into the origin of unstable sodium graphite intercalation compoundsOlena Lenchuk, Philipp Adelhelm, Doreen MollenhauerPageof 15