Cobalt Sulfide Nanosheet/Graphene/Carbon Nanotube Nanocomposites as Flexible Electrodes for Hydrogen Evolution

Нанокомпозиты из нанослоёв сульфида кобальта, графена и углеродных нанотрубок в качестве гибких электродов для выделения водорода
Shengjie Peng, Linlin Li, Xiaopeng Han, Wenping Sun, Madhavi Srinivasan, Subodh G. Mhaisalkar, Fangyi Cheng, Qingyu Yan, Jun Chen, Seeram Ramakrishna
2014-10-08

Carbon nanotube networkCobalt sulfide nanocompositesFlexible electrocatalystHydrogen evolution reactionReduced graphene oxide
Flexible three-dimensional (3D) nanoarchitectures have received tremendous interest recently because of their potential applications in wearable electronics, roll-up displays, and other devices. The design and fabrication of a flexible and robust electrode based on cobalt sulfide/reduced graphene oxide/carbon nanotube (CoS2 /RGO-CNT) nanocomposites are reported. An efficient hydrothermal process combined with vacuum filtration was used to synthesize such composite architecture, which was then embedded in a porous CNT network. This conductive and robust film is evaluated as electrocatalyst for the hydrogen evolution reaction. The synergistic effect of CoS2 , graphene, and CNTs leads to unique CoS2 /RGO-CNT nanoarchitectures, the HER activity of which is among the highest for non-noble metal electrocatalysts, showing 10 mA cm(-2) current density at about 142 mV overpotentials and a high electrochemical stability.
1
A flexible, robust three-dimensional CoS₂/reduced graphene oxide–carbon nanotube composite electrode was fabricated using hydrothermal synthesis and vacuum filtration.
2
Embedding the composite in a porous carbon nanotube network produced a conductive, mechanically robust flexible film.
3
Synergistic interactions among CoS₂, graphene, and carbon nanotubes enhanced hydrogen evolution reaction electrocatalytic activity.
4
The composite exhibited high electrochemical stability, supporting its use in flexible hydrogen-evolution electrodes.
5
The electrode achieved 10 mA cm⁻² at approximately 142 mV overpotential, ranking among the highest-performing non-noble-metal HER electrocatalysts.

Flexible CoS2/reduced graphene oxide–carbon nanotube (CoS2/RGO-CNT) nanocomposite electrodes

Electrocatalytic hydrogen evolution reaction activity and electrochemical stability

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2014-10-08
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Shengjie Peng
Linlin Li
Xiaopeng Han
Wenping Sun
Madhavi Srinivasan
Subodh G. Mhaisalkar
Fangyi Cheng
Qingyu Yan
Jun Chen
Seeram Ramakrishna
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