Ammonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst

Ammonia-fed protonic ceramic fuel cells could be a more sustainable alternative than their hydrogen-fed counterparts. In this work, the authors couple an reversible ammonia catalyst with a protonic ceramic electrochemical cell, enabling cracking of ammonia into H2 and N2 for fuel-cell mode operation...

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Autores principales: Liangzhu Zhu, Chris Cadigan, Chuancheng Duan, Jake Huang, Liuzhen Bian, Long Le, Carolina H. Hernandez, Victoria Avance, Ryan O’Hayre, Neal P. Sullivan
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/166226f49df34fb2beee4c439ff96aa3
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spelling oai:doaj.org-article:166226f49df34fb2beee4c439ff96aa32021-12-02T15:10:45ZAmmonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst10.1038/s42004-021-00559-22399-3669https://doaj.org/article/166226f49df34fb2beee4c439ff96aa32021-08-01T00:00:00Zhttps://doi.org/10.1038/s42004-021-00559-2https://doaj.org/toc/2399-3669Ammonia-fed protonic ceramic fuel cells could be a more sustainable alternative than their hydrogen-fed counterparts. In this work, the authors couple an reversible ammonia catalyst with a protonic ceramic electrochemical cell, enabling cracking of ammonia into H2 and N2 for fuel-cell mode operation, as well as synthesis of ammonia from H2O and N2 in electrolysis mode operation.Liangzhu ZhuChris CadiganChuancheng DuanJake HuangLiuzhen BianLong LeCarolina H. HernandezVictoria AvanceRyan O’HayreNeal P. SullivanNature PortfolioarticleChemistryQD1-999ENCommunications Chemistry, Vol 4, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Chemistry
QD1-999
spellingShingle Chemistry
QD1-999
Liangzhu Zhu
Chris Cadigan
Chuancheng Duan
Jake Huang
Liuzhen Bian
Long Le
Carolina H. Hernandez
Victoria Avance
Ryan O’Hayre
Neal P. Sullivan
Ammonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst
description Ammonia-fed protonic ceramic fuel cells could be a more sustainable alternative than their hydrogen-fed counterparts. In this work, the authors couple an reversible ammonia catalyst with a protonic ceramic electrochemical cell, enabling cracking of ammonia into H2 and N2 for fuel-cell mode operation, as well as synthesis of ammonia from H2O and N2 in electrolysis mode operation.
format article
author Liangzhu Zhu
Chris Cadigan
Chuancheng Duan
Jake Huang
Liuzhen Bian
Long Le
Carolina H. Hernandez
Victoria Avance
Ryan O’Hayre
Neal P. Sullivan
author_facet Liangzhu Zhu
Chris Cadigan
Chuancheng Duan
Jake Huang
Liuzhen Bian
Long Le
Carolina H. Hernandez
Victoria Avance
Ryan O’Hayre
Neal P. Sullivan
author_sort Liangzhu Zhu
title Ammonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst
title_short Ammonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst
title_full Ammonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst
title_fullStr Ammonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst
title_full_unstemmed Ammonia-fed reversible protonic ceramic fuel cells with Ru-based catalyst
title_sort ammonia-fed reversible protonic ceramic fuel cells with ru-based catalyst
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/166226f49df34fb2beee4c439ff96aa3
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AT chriscadigan ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT chuanchengduan ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT jakehuang ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT liuzhenbian ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT longle ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT carolinahhernandez ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT victoriaavance ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT ryanohayre ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
AT nealpsullivan ammoniafedreversibleprotonicceramicfuelcellswithrubasedcatalyst
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