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molybdenum sulfide nanosheets/nitrogen-doped reduced graphene oxide on glassy carbon

Based on

1 Articles
2016 Most recent source

Composition

Image only illustrates the order and placement of components as described in literature.

1

amino-functionalized reduced graphene oxide

nitrogen-doped reduced graphene oxide N-doped mildly reduced graphene oxide nitrogen doped reduced graphene oxide N-doped reduced graphene oxide EDA-treated graphene oxide N,O-doped graphene sheets amino-functionalized RGO nitrogen-doped graphene N,O-dual doped graphene nitrogen doped graphene graphene nanosheets N,O-doped graphene N-doped graphene N-doped RGO N-mrGO N-rGO G-EDA N-RGO GNS NGr NG
Type Nano Material
Formula
Role raw materials
2

2H phase molybdenum disulfide

molybdenum(IV) sulfide 2H molybdenum(IV) disulfide molybdenum disulfide 2H molybdenum(IV) sulfide molybdenum sulfide 2H molybdenum disulfide molybdenum sulfide 2H-MoS2 MoS2 2H H-MoS2 S-MoS2
Type Single Compound
Formula MoS2
Role raw materials

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
Nyquist plot

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Catalytic properties

Reaction Value Nanomaterial Variant Source
hydrogen evolution reaction (HER)

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Applications

Area Application Nanomaterial Variant Source
catalysis

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Characterization

Method Nanomaterial Variant Source
dielectric spectroscopy

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Preparation

Method 1

Type: Chemical synthesis
Source:
Starting materials
  • graphene oxide
  • mixture of substance based on (phosphododecamolybdic heteropolyacid/phosphododecamolybdic heteropolyacid/water/water)
  1. ayd8S7DMA9NK8E
Product

molybdenum sulfide nanosheets/nitrogen-doped reduced graphene oxide on glassy carbon

Size: not specified

Medium/Support: none

Method 2

Type: Physical formation
Source:
Product

molybdenum sulfide nanosheets/nitrogen-doped reduced graphene oxide on glassy carbon

Size: not specified

Medium: none

Support: glass-like carbon

References

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