One-pot hydrothermal synthesis of supported CoS electrocatalysts: The effect of support nature on oxygen reduction reaction activity in alkaline medium

The development of efficient and durable earth-abundant electrocatalysts for the oxygen reduction reaction (ORR) is an ongoing challenge. In this work, we directly anchored CoS nanocatalysts (20 wt%) on different supports, namely, carbon nanotubes (CNTs) and reduced graphene oxide by a single-pot hy...

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Published inInternational journal of hydrogen energy Vol. 43; no. 9; pp. 4773 - 4783
Main Authors Senthil Kumar, S.M., Selvakumar, K., Thangamuthu, R.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.03.2018
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Abstract The development of efficient and durable earth-abundant electrocatalysts for the oxygen reduction reaction (ORR) is an ongoing challenge. In this work, we directly anchored CoS nanocatalysts (20 wt%) on different supports, namely, carbon nanotubes (CNTs) and reduced graphene oxide by a single-pot hydrothermal route. The developed synthesis processes enabled us to alter the composite nature of CoS by changing the sulfur precursor used. The corresponding electrocatalytic performance of these composite catalysts toward the ORR was studied in alkaline medium. The increase in the effective electrode surface area that accompanies the CoS nanocomposite substantially boosts its ORR catalytic performance. The CoS-CNT-Cy hybrid material shows an onset potential of 0.85 V, which is 60–200 mV less negative than that of other catalysts tested. The catalytic current density achieved with the hybrid material at 0.2 mg cm−2 is comparable with that of commercial Pt/C (20%). The synergistic effect of CNTs and CoS enhances the overall performance of the hybrid catalyst. Extension of this nanocomposite strategy to other earth-abundant materials could similarly enable inexpensive electrocatalysts that lack the high intrinsic activity of the noble metals. •A one-pot hydrothermal route was developed to anchor CoS nanocatalysts on CNTs and rGO.•The nature of the sulfur precursor plays an important role in CoS-CNT catalyst preparation.•The increase in the effective electrode surface area of CoS-CNTs boosts ORR activity.•The RRDE study reveals that the CoS-CNT catalyst favors the complete 4-electron reduction.
AbstractList The development of efficient and durable earth-abundant electrocatalysts for the oxygen reduction reaction (ORR) is an ongoing challenge. In this work, we directly anchored CoS nanocatalysts (20 wt%) on different supports, namely, carbon nanotubes (CNTs) and reduced graphene oxide by a single-pot hydrothermal route. The developed synthesis processes enabled us to alter the composite nature of CoS by changing the sulfur precursor used. The corresponding electrocatalytic performance of these composite catalysts toward the ORR was studied in alkaline medium. The increase in the effective electrode surface area that accompanies the CoS nanocomposite substantially boosts its ORR catalytic performance. The CoS-CNT-Cy hybrid material shows an onset potential of 0.85 V, which is 60–200 mV less negative than that of other catalysts tested. The catalytic current density achieved with the hybrid material at 0.2 mg cm−2 is comparable with that of commercial Pt/C (20%). The synergistic effect of CNTs and CoS enhances the overall performance of the hybrid catalyst. Extension of this nanocomposite strategy to other earth-abundant materials could similarly enable inexpensive electrocatalysts that lack the high intrinsic activity of the noble metals. •A one-pot hydrothermal route was developed to anchor CoS nanocatalysts on CNTs and rGO.•The nature of the sulfur precursor plays an important role in CoS-CNT catalyst preparation.•The increase in the effective electrode surface area of CoS-CNTs boosts ORR activity.•The RRDE study reveals that the CoS-CNT catalyst favors the complete 4-electron reduction.
Author Selvakumar, K.
Senthil Kumar, S.M.
Thangamuthu, R.
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Cobalt sulfide
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  contributor:
    fullname: Lu
– volume: 110
  start-page: 936
  year: 2006
  ident: 10.1016/j.ijhydene.2017.12.063_bib14
  article-title: Co9S8 as a catalyst for electroreduction of O2: quantum chemistry predictions
  publication-title: J Phys Chem B
  doi: 10.1021/jp054487f
  contributor:
    fullname: Sidik
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Snippet The development of efficient and durable earth-abundant electrocatalysts for the oxygen reduction reaction (ORR) is an ongoing challenge. In this work, we...
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SubjectTerms CNT
Cobalt sulfide
Koutecky-Levich plot
Oxygen reduction
rGO
Rotating ring disc electrode
Title One-pot hydrothermal synthesis of supported CoS electrocatalysts: The effect of support nature on oxygen reduction reaction activity in alkaline medium
URI https://dx.doi.org/10.1016/j.ijhydene.2017.12.063
Volume 43
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