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However, bulk WS2 is a poor HER catalyst.
Hitherto, WP has been used as hydrogen evolution reaction (HER) catalyst.
Recently, metallic CoS2 has been recognized for its potential as a viable HER catalyst like MoS2.
The design and synthesis of highly active hydrogen evolution reaction (HER) catalyst with strong stability is highly desirable and challenging.
Comparison of HER activity measured for our CoS2/rGO with other reported CoS materials as HER catalyst.
More importantly, it provides additional active sites for H2 production on its basal plane, making it an efficient HER catalyst.
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Earth-abundant Ni has emerged as an interesting catalytic material toward electrochemical hydrogen evolution reaction (HER) in alkaline media, but developing high-performance Ni-integrated HER catalysts is still a big challenge.
This work may provide guidelines for the design and synthesis of efficient non-precious HER catalysts.
These findings open up an effective and propagable strategy for nanostructural HER catalysts synthesis.
The behavior of Ni-(MoS2/GO) exceeds most of the same reported HER catalysts in previously literature.
In addition, the DG MoS2 gives a Tafel slope of 50 mV dec−1, which is relatively low compared to previously reported MoS2-based HER catalysts (Fig. 6c).
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