Journalartikel
Autorenliste: Exner, Kai S.
Jahr der Veröffentlichung: 2018
Seiten: 3243-3248
Zeitschrift: ChemElectroChem
Bandnummer: 5
Heftnummer: 21
ISSN: 2196-0216
DOI Link: https://doi.org/10.1002/celc.201800838
Verlag: Wiley
Abstract:
In the last two decades, materials design in lithium-ion batteries (LIBs) based on first-principles methods has been spurred mainly by computationally demanding investigations of diffusion pathways, redox mechanisms or activation barriers for lithium-ion migration. However, hitherto an expeditious tool with conceptual simplicity that enables a priori computational screening based on thermodynamic considerations in order to propose potential candidates for the usage as electrode materials in LIBs is missing. Here, a novel method based on the application of Volcano plots from catalysis is introduced which allows assessing lithium intercalation in nano-sized electrode materials of LIBs by means of both activity and stability.
Zitierstile
Harvard-Zitierstil: Exner, K. (2018) Activity - Stability Volcano Plots for the Investigation of Nano-Sized Electrode Materials in Lithium-Ion Batteries, ChemElectroChem, 5(21), pp. 3243-3248. https://doi.org/10.1002/celc.201800838
APA-Zitierstil: Exner, K. (2018). Activity - Stability Volcano Plots for the Investigation of Nano-Sized Electrode Materials in Lithium-Ion Batteries. ChemElectroChem. 5(21), 3243-3248. https://doi.org/10.1002/celc.201800838
Schlagwörter
ab initio thermodynamics; INSERTION; SURFACE POURBAIX DIAGRAMS; volcano plots