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Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys

Hydriding/dehydriding properties of a series of LaNi(5) based alloys were compared by applying both hydrogen gas phase and electrochemical hydrogen charge/discharge methods. The highest hydrogen absorption capacity of 1.4 wt.% H(2) was found for LaNi(4.3)Co(0.4)Al(0.3), although LaNi(4.8)Sn(0.2) als...

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Autores principales: Todorova, Stanislava, Abrashev, Borislav, Rangelova, Vesselina, Mihaylov, Lyuben, Vassileva, Evelina, Petrov, Konstantin, Spassov, Tony
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7792962/
https://www.ncbi.nlm.nih.gov/pubmed/33375180
http://dx.doi.org/10.3390/ma14010014
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author Todorova, Stanislava
Abrashev, Borislav
Rangelova, Vesselina
Mihaylov, Lyuben
Vassileva, Evelina
Petrov, Konstantin
Spassov, Tony
author_facet Todorova, Stanislava
Abrashev, Borislav
Rangelova, Vesselina
Mihaylov, Lyuben
Vassileva, Evelina
Petrov, Konstantin
Spassov, Tony
author_sort Todorova, Stanislava
collection PubMed
description Hydriding/dehydriding properties of a series of LaNi(5) based alloys were compared by applying both hydrogen gas phase and electrochemical hydrogen charge/discharge methods. The highest hydrogen absorption capacity of 1.4 wt.% H(2) was found for LaNi(4.3)Co(0.4)Al(0.3), although LaNi(4.8)Sn(0.2) also reveals comparable hydrogen capacity (>1.3%). A significant difference in the hydriding kinetics was observed for all studied alloys before and after activation. The activated alloys (5 cycles at 65 °C, 40 atm. H(2)) reach their maximum capacities after less than a minute, whereas the pure LaNi(5) alloy needs several minutes for complete hydriding. The electrochemical hydriding/dehydriding behavior of the alloys reveals superior performance of LaNi(4.3)Co(0.4)Al(0.3) and LaNi(4.8)Sn(0.2) compared to the other compositions studied, as the capacity of LaNi(4.8)Sn(0.2) decreases by only 10% for 60 charge/discharge cycles at a current density of 100 mA/g. Good agreement between the hydrogen sorption kinetics of the alloys obtained electrochemically and from hydrogen gas phase has also been observed.
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spelling pubmed-77929622021-01-09 Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys Todorova, Stanislava Abrashev, Borislav Rangelova, Vesselina Mihaylov, Lyuben Vassileva, Evelina Petrov, Konstantin Spassov, Tony Materials (Basel) Article Hydriding/dehydriding properties of a series of LaNi(5) based alloys were compared by applying both hydrogen gas phase and electrochemical hydrogen charge/discharge methods. The highest hydrogen absorption capacity of 1.4 wt.% H(2) was found for LaNi(4.3)Co(0.4)Al(0.3), although LaNi(4.8)Sn(0.2) also reveals comparable hydrogen capacity (>1.3%). A significant difference in the hydriding kinetics was observed for all studied alloys before and after activation. The activated alloys (5 cycles at 65 °C, 40 atm. H(2)) reach their maximum capacities after less than a minute, whereas the pure LaNi(5) alloy needs several minutes for complete hydriding. The electrochemical hydriding/dehydriding behavior of the alloys reveals superior performance of LaNi(4.3)Co(0.4)Al(0.3) and LaNi(4.8)Sn(0.2) compared to the other compositions studied, as the capacity of LaNi(4.8)Sn(0.2) decreases by only 10% for 60 charge/discharge cycles at a current density of 100 mA/g. Good agreement between the hydrogen sorption kinetics of the alloys obtained electrochemically and from hydrogen gas phase has also been observed. MDPI 2020-12-22 /pmc/articles/PMC7792962/ /pubmed/33375180 http://dx.doi.org/10.3390/ma14010014 Text en © 2020 by the authors. 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/).
spellingShingle Article
Todorova, Stanislava
Abrashev, Borislav
Rangelova, Vesselina
Mihaylov, Lyuben
Vassileva, Evelina
Petrov, Konstantin
Spassov, Tony
Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys
title Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys
title_full Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys
title_fullStr Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys
title_full_unstemmed Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys
title_short Hydrogen Gas Phase and Electrochemical Hydriding of LaNi(5−x)M(x) (M = Sn, Co, Al) Alloys
title_sort hydrogen gas phase and electrochemical hydriding of lani(5−x)m(x) (m = sn, co, al) alloys
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7792962/
https://www.ncbi.nlm.nih.gov/pubmed/33375180
http://dx.doi.org/10.3390/ma14010014
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