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An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables

Magnesium-based batteries represent one of the successfully emerging electrochemical energy storage chemistries, mainly due to the high theoretical volumetric capacity of metallic magnesium (i.e., 3833 mAh cm(−3) vs. 2046 mAh cm(−3) for lithium), its low reduction potential (−2.37 V vs. SHE), abunda...

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Autores principales: Bella, Federico, De Luca, Stefano, Fagiolari, Lucia, Versaci, Daniele, Amici, Julia, Francia, Carlotta, Bodoardo, Silvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8004101/
https://www.ncbi.nlm.nih.gov/pubmed/33809914
http://dx.doi.org/10.3390/nano11030810
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author Bella, Federico
De Luca, Stefano
Fagiolari, Lucia
Versaci, Daniele
Amici, Julia
Francia, Carlotta
Bodoardo, Silvia
author_facet Bella, Federico
De Luca, Stefano
Fagiolari, Lucia
Versaci, Daniele
Amici, Julia
Francia, Carlotta
Bodoardo, Silvia
author_sort Bella, Federico
collection PubMed
description Magnesium-based batteries represent one of the successfully emerging electrochemical energy storage chemistries, mainly due to the high theoretical volumetric capacity of metallic magnesium (i.e., 3833 mAh cm(−3) vs. 2046 mAh cm(−3) for lithium), its low reduction potential (−2.37 V vs. SHE), abundance in the Earth’s crust (10(4) times higher than that of lithium) and dendrite-free behaviour when used as an anode during cycling. However, Mg deposition and dissolution processes in polar organic electrolytes lead to the formation of a passivation film bearing an insulating effect towards Mg(2+) ions. Several strategies to overcome this drawback have been recently proposed, keeping as a main goal that of reducing the formation of such passivation layers and improving the magnesium-related kinetics. This manuscript offers a literature analysis on this topic, starting with a rapid overview on magnesium batteries as a feasible strategy for storing electricity coming from renewables, and then addressing the most relevant outcomes in the field of anodic materials (i.e., metallic magnesium, bismuth-, titanium- and tin-based electrodes, biphasic alloys, nanostructured metal oxides, boron clusters, graphene-based electrodes, etc.).
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spelling pubmed-80041012021-03-28 An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables Bella, Federico De Luca, Stefano Fagiolari, Lucia Versaci, Daniele Amici, Julia Francia, Carlotta Bodoardo, Silvia Nanomaterials (Basel) Review Magnesium-based batteries represent one of the successfully emerging electrochemical energy storage chemistries, mainly due to the high theoretical volumetric capacity of metallic magnesium (i.e., 3833 mAh cm(−3) vs. 2046 mAh cm(−3) for lithium), its low reduction potential (−2.37 V vs. SHE), abundance in the Earth’s crust (10(4) times higher than that of lithium) and dendrite-free behaviour when used as an anode during cycling. However, Mg deposition and dissolution processes in polar organic electrolytes lead to the formation of a passivation film bearing an insulating effect towards Mg(2+) ions. Several strategies to overcome this drawback have been recently proposed, keeping as a main goal that of reducing the formation of such passivation layers and improving the magnesium-related kinetics. This manuscript offers a literature analysis on this topic, starting with a rapid overview on magnesium batteries as a feasible strategy for storing electricity coming from renewables, and then addressing the most relevant outcomes in the field of anodic materials (i.e., metallic magnesium, bismuth-, titanium- and tin-based electrodes, biphasic alloys, nanostructured metal oxides, boron clusters, graphene-based electrodes, etc.). MDPI 2021-03-22 /pmc/articles/PMC8004101/ /pubmed/33809914 http://dx.doi.org/10.3390/nano11030810 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Review
Bella, Federico
De Luca, Stefano
Fagiolari, Lucia
Versaci, Daniele
Amici, Julia
Francia, Carlotta
Bodoardo, Silvia
An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables
title An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables
title_full An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables
title_fullStr An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables
title_full_unstemmed An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables
title_short An Overview on Anodes for Magnesium Batteries: Challenges towards a Promising Storage Solution for Renewables
title_sort overview on anodes for magnesium batteries: challenges towards a promising storage solution for renewables
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8004101/
https://www.ncbi.nlm.nih.gov/pubmed/33809914
http://dx.doi.org/10.3390/nano11030810
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