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The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries

The so-called solid electrolyte interphase (SEI), a nanolayer formed on the negative electrode of lithium-ion batteries during the first cycles, largely influences some key performance indicators such as cycle life and specific power. The reason is due to the fact that the SEI prevents continuous el...

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Autores principales: Muñoz-Torrero, David, Santana Santos, Carla, García-Quismondo, Enrique, Dieckhöfer, Stefan, Erichsen, Thomas, Palma, Jesús, Schuhmann, Wolfgang, Ventosa, Edgar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10201650/
https://www.ncbi.nlm.nih.gov/pubmed/37223417
http://dx.doi.org/10.1039/d3ra00631j
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author Muñoz-Torrero, David
Santana Santos, Carla
García-Quismondo, Enrique
Dieckhöfer, Stefan
Erichsen, Thomas
Palma, Jesús
Schuhmann, Wolfgang
Ventosa, Edgar
author_facet Muñoz-Torrero, David
Santana Santos, Carla
García-Quismondo, Enrique
Dieckhöfer, Stefan
Erichsen, Thomas
Palma, Jesús
Schuhmann, Wolfgang
Ventosa, Edgar
author_sort Muñoz-Torrero, David
collection PubMed
description The so-called solid electrolyte interphase (SEI), a nanolayer formed on the negative electrode of lithium-ion batteries during the first cycles, largely influences some key performance indicators such as cycle life and specific power. The reason is due to the fact that the SEI prevents continuous electrolyte decomposition, making this protecting character extremely important. Herein, a specifically designed scanning droplet cell system (SDCS) is developed to study the protecting character of the SEI on lithium-ion battery (LIB) electrode materials. SDCS allows for automatized electrochemical measurements with improved reproducibility and time-saving experimentation. Besides the necessary adaptations for its implementation for non-aqueous batteries, a new operating mode, the so-called redox mediated-scanning droplet cell system (RM-SDCS), is established to investigate the SEI properties. By adding a redox mediator (e.g. a viologen derivative) to the electrolyte, evaluation of the protecting character of the SEI becomes accessible. Validation of the proposed methodology was performed using a model sample (Cu surface). Afterwards, RM-SDCS was employed on Si–graphite electrodes as a case study. On the one hand, the RM-SDCS shed light on the degradation mechanisms providing direct electrochemical evidence of the rupture of the SEI upon lithiation. On the other hand, the RM-SDCS was presented as an accelerated method capable of searching for electrolyte additives. The results indicate an enhancement in the protecting character of the SEI when 4 wt% of both vinyl carbonate and fluoroethylene carbonate were used simultaneously.
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spelling pubmed-102016502023-05-23 The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries Muñoz-Torrero, David Santana Santos, Carla García-Quismondo, Enrique Dieckhöfer, Stefan Erichsen, Thomas Palma, Jesús Schuhmann, Wolfgang Ventosa, Edgar RSC Adv Chemistry The so-called solid electrolyte interphase (SEI), a nanolayer formed on the negative electrode of lithium-ion batteries during the first cycles, largely influences some key performance indicators such as cycle life and specific power. The reason is due to the fact that the SEI prevents continuous electrolyte decomposition, making this protecting character extremely important. Herein, a specifically designed scanning droplet cell system (SDCS) is developed to study the protecting character of the SEI on lithium-ion battery (LIB) electrode materials. SDCS allows for automatized electrochemical measurements with improved reproducibility and time-saving experimentation. Besides the necessary adaptations for its implementation for non-aqueous batteries, a new operating mode, the so-called redox mediated-scanning droplet cell system (RM-SDCS), is established to investigate the SEI properties. By adding a redox mediator (e.g. a viologen derivative) to the electrolyte, evaluation of the protecting character of the SEI becomes accessible. Validation of the proposed methodology was performed using a model sample (Cu surface). Afterwards, RM-SDCS was employed on Si–graphite electrodes as a case study. On the one hand, the RM-SDCS shed light on the degradation mechanisms providing direct electrochemical evidence of the rupture of the SEI upon lithiation. On the other hand, the RM-SDCS was presented as an accelerated method capable of searching for electrolyte additives. The results indicate an enhancement in the protecting character of the SEI when 4 wt% of both vinyl carbonate and fluoroethylene carbonate were used simultaneously. The Royal Society of Chemistry 2023-05-22 /pmc/articles/PMC10201650/ /pubmed/37223417 http://dx.doi.org/10.1039/d3ra00631j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Muñoz-Torrero, David
Santana Santos, Carla
García-Quismondo, Enrique
Dieckhöfer, Stefan
Erichsen, Thomas
Palma, Jesús
Schuhmann, Wolfgang
Ventosa, Edgar
The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries
title The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries
title_full The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries
title_fullStr The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries
title_full_unstemmed The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries
title_short The redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in Li-ion batteries
title_sort redox mediated – scanning droplet cell system for evaluation of the solid electrolyte interphase in li-ion batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10201650/
https://www.ncbi.nlm.nih.gov/pubmed/37223417
http://dx.doi.org/10.1039/d3ra00631j
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