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      Poh, Hwee Ling (4)
      Pumera, Martin (4)
      Sofer, Zdeněk (4)
      Šaněk, Filip (4)
      Ambrosi, Adriano (2)Zhao, Guanjia (2)Chee, Yin Sze (1)Chua, Chun Kiang (1)Giovanni, Marcella (1)Khezri, Bahareh (1)... View MoreDate2012 (4)SubjectEngineering (1)Science (1)... View More

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      Noble metal (Pd, Ru, Rh, Pt, Au, Ag) doped graphene hybrids for electrocatalysis 

      Giovanni, Marcella; Poh, Hwee Ling; Ambrosi, Adriano; Zhao, Guanjia; Sofer, Zdeněk; Šaněk, Filip; Khezri, Bahareh; Webster, Richard David; Pumera, Martin (2012)
      Metal decorated graphene materials are highly important for catalysis. In this work, noble metal doped-graphene hybrids were prepared by a simple and scalable method. The thermal reductions of metal doped-graphite oxide ...
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      High-pressure hydrogenation of graphene : towards graphane 

      Poh, Hwee Ling; Šaněk, Filip; Sofer, Zdeněk; Pumera, Martin (2012)
      The conversion of graphene to graphane is of high importance from a technological and scientific point of view. We present here a scalable method for the hydrogenation of graphene based on thermal exfoliation of graphite ...
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      Graphenes prepared by Staudenmaier, Hofmann and Hummers methods with consequent thermal exfoliation exhibit very different electrochemical properties 

      Poh, Hwee Ling; Šaněk, Filip; Ambrosi, Adriano; Zhao, Guanjia; Sofer, Zdeněk; Pumera, Martin (2012)
      Large-scale fabrication of graphene is highly important for industrial and academic applications of this material. The most common large-scale preparation method is the oxidation of graphite to graphite oxide using ...
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      Influence of parent graphite particle size on the electrochemistry of thermally reduced graphene oxide 

      Chee, Yin Sze; Poh, Hwee Ling; Chua, Chun Kiang; Šaněk, Filip; Sofer, Zdeněk; Pumera, Martin (2012)
      Electrochemical applications of graphene are of very high importance. For electrochemistry, bulk quantities of materials are needed. The most common preparation of bulk quantities of graphene materials is based on oxidation ...

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