This work reports, for the first time, Co-Mo-B as a bifunctional electrocatalyst, prepared by a facile reduction method. The optimized catalyst, Co-3Mo-B shows excellent HER performance and achieves 10 mA/cm2 at mere 96 and 66 mV (vs RHE) in pH 7 and pH 14, respectively with good stability (40 hours) and reusability (5000 cycles). Co-3Mo-B catalyst is found to be made up of nano-sized crystalline domains, separated by grain boundaries containing active under-co-ordinated sites. From morphological, physico-chemical and electrochemical analyses, it was found that Co-3Mo-B nanoparticles (NPs) exhibit small size (18 nm) with high specific and electrochemical surface area. Under alkaline conditions, Co- 3Mo-B can also produce oxygen at meagre overpotentials (10 mA/cm2 at 320 mV) with favourable stability. Bifunctional property is demonstrated by employing Co-3Mo-B in a 2-electrode alkaline cell to execute overall water electrolysis, producing 10 mA/cm2 at just 1.69 V, which is maintained for at least 25 hours of operation. The nature of the catalyst to form Co oxide/hydroxide species on the surface is responsible for good OER performance. The significant activity of Co-3Mo-B makes it the best metal boride bifunctional electrocatalyst reported so far.

Co-Mo-B Nanoparticles as a non-precious and efficient Bifunctional Electrocatalyst for Hydrogen and Oxygen Evolution / Gupta, S.; Patel, N.; Fernandes, R.; Hanchate, S.; Miotello, A.; Kothari, D. C.. - In: ELECTROCHIMICA ACTA. - ISSN 0013-4686. - STAMPA. - 232:(2017), pp. 64-71. [10.1016/j.electacta.2017.02.100]

Co-Mo-B Nanoparticles as a non-precious and efficient Bifunctional Electrocatalyst for Hydrogen and Oxygen Evolution

A. Miotello;
2017-01-01

Abstract

This work reports, for the first time, Co-Mo-B as a bifunctional electrocatalyst, prepared by a facile reduction method. The optimized catalyst, Co-3Mo-B shows excellent HER performance and achieves 10 mA/cm2 at mere 96 and 66 mV (vs RHE) in pH 7 and pH 14, respectively with good stability (40 hours) and reusability (5000 cycles). Co-3Mo-B catalyst is found to be made up of nano-sized crystalline domains, separated by grain boundaries containing active under-co-ordinated sites. From morphological, physico-chemical and electrochemical analyses, it was found that Co-3Mo-B nanoparticles (NPs) exhibit small size (18 nm) with high specific and electrochemical surface area. Under alkaline conditions, Co- 3Mo-B can also produce oxygen at meagre overpotentials (10 mA/cm2 at 320 mV) with favourable stability. Bifunctional property is demonstrated by employing Co-3Mo-B in a 2-electrode alkaline cell to execute overall water electrolysis, producing 10 mA/cm2 at just 1.69 V, which is maintained for at least 25 hours of operation. The nature of the catalyst to form Co oxide/hydroxide species on the surface is responsible for good OER performance. The significant activity of Co-3Mo-B makes it the best metal boride bifunctional electrocatalyst reported so far.
2017
Gupta, S.; Patel, N.; Fernandes, R.; Hanchate, S.; Miotello, A.; Kothari, D. C.
Co-Mo-B Nanoparticles as a non-precious and efficient Bifunctional Electrocatalyst for Hydrogen and Oxygen Evolution / Gupta, S.; Patel, N.; Fernandes, R.; Hanchate, S.; Miotello, A.; Kothari, D. C.. - In: ELECTROCHIMICA ACTA. - ISSN 0013-4686. - STAMPA. - 232:(2017), pp. 64-71. [10.1016/j.electacta.2017.02.100]
File in questo prodotto:
File Dimensione Formato  
PUBLISHED PAPER.pdf

Solo gestori archivio

Tipologia: Versione editoriale (Publisher’s layout)
Licenza: Tutti i diritti riservati (All rights reserved)
Dimensione 1.98 MB
Formato Adobe PDF
1.98 MB Adobe PDF   Visualizza/Apri
Co-Mo-B Nanoparticles as a non-precious and efficient Bifunctional Electrocatalyst for Hydrogen and Oxygen Evolution.pdf

accesso aperto

Tipologia: Pre-print non referato (Non-refereed preprint)
Licenza: Tutti i diritti riservati (All rights reserved)
Dimensione 1.68 MB
Formato Adobe PDF
1.68 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/191937
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 115
  • ???jsp.display-item.citation.isi??? 108
social impact