• English
    • Deutsch
  • English 
    • English
    • Deutsch
  • Login
View Item 
  •   Home
  • Universität Ulm
  • Publikationen
  • View Item
  •   Home
  • Universität Ulm
  • Publikationen
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

First-principles studies on the atomistic properties of metallic magnesium as snode material in magnesium-ion batteries

Thumbnail
Jacob_2022.pdf (5.123Mb)
Sup_Jacob_2022.pdf (4.797Mb)

peer-reviewed

Erstveröffentlichung
2022-03-30
Authors
Fiesinger, Florian
Gaissmaier, Daniel
van den Borg, Matthias
Jacob, Timo
Wissenschaftlicher Artikel


Published in
ChemSusChem ; 15 (2022), 14. - Art.-Nr. e202200414. - ISSN 1864-5631. - eISSN 1864-564X
Link to original publication
https://dx.doi.org/10.1002/cssc.202200414
Faculties
Fakultät für Naturwissenschaften
Institutions
Institut für Elektrochemie
Helmholtz-Institut Ulm
Document version
published version (publisher's PDF)
Abstract
Rechargeable magnesium-ion batteries (MIBs) are a promising alternative to commercial lithium-ion batteries (LIBs). They are safer to handle, environmentally more friendly, and provide a five-time higher volumetric capacity (3832 mAh cm−3) than commercialized LIBs. However, the formation of a passivation layer on metallic Mg electrodes is still a major challenge towards their commercialization. Using density functional theory (DFT), the atomistic properties of metallic magnesium, mainly well-selected self-diffusion processes on perfect and imperfect Mg surfaces were investigated to better understand the initial surface growth phenomena. Subsequently, rate constants and activation temperatures of crucial diffusion processes on Mg(0001) and Mg(10urn:x-wiley:18645631:media:cssc202200414:cssc202200414-math-0001 1) were determined, providing preliminary insights into the surface kinetics of metallic Mg electrodes. The obtained DFT results provide a data set for parametrizing a force field for metallic Mg or performing kinetic Monte-Carlo simulations.
DFG Project THU
EXC 2154 / POLiS / POLiS - Post Lithium Storage Cluster of Excellence / DFG / 390874152
HPC Forschungscluster (bwForCluster) Computergestützte Chemie und Quantenwissenschaften / DFG / 405998092 [INST 40/575-1 FUGG]
FOR 5065 Teilprojekt / Theoretische Untersuchungen zur Ionenbewegung in kristallinen Materialien / DFG / 428906592
Project uulm
bwHPC / Land Baden-Württemberg
Publication funding
Gefördert durch die Deutsche Forschungsgemeinschaft (DFG) - 491116205oa-dfg-491116205
Is supplemented by
https://chemistry-europe.onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Fcssc.202200414&file=cssc202200414-sup-0001-misc_information.pdf
Subject headings
[GND]: Batterie
[LCSH]: Anodes | Density functionals | Magnesium
[Free subject headings]: batteries | density functional theory | surface growth
[DDC subject group]: DDC 540 / Chemistry & allied sciences
License
CC BY-NC-ND 4.0 International
https://creativecommons.org/licenses/by-nc-nd/4.0/

Metadata
Show full item record

DOI & citation

Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-47130

Fiesinger, Florian et al. (2023): First-principles studies on the atomistic properties of metallic magnesium as snode material in magnesium-ion batteries. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-47130
Citation formatter >



Policy | kiz service OPARU | Contact Us
Impressum | Privacy statement
 

 

Advanced Search

Browse

All of OPARUCommunities & CollectionsPersonsInstitutionsPublication typesUlm SerialsDewey Decimal ClassesEU projects UlmDFG projects UlmOther projects Ulm

My Account

LoginRegister

Statistics

View Usage Statistics

Policy | kiz service OPARU | Contact Us
Impressum | Privacy statement