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Graphene oxide nitrogen-doped

Liu, S. Y, J. Xie, H. B. Li et al. 2014. Nitrogen-doped reduced graphene oxide for high-performance flexible all-solid-state micro-supercapacitors. Journal of Materials Chemistry A 2 18125-18131. [Pg.241]

Long, J. Xie, X. Xu, Gu, Q. Chen, L. Wang, X., Nitrogen-Doped Graphene Nanosheets as Metal-Free Catalysts for Aerobic Selective Oxidation of Benzylic Alcohols. ACS Catalysis 2012,2 (4), 622-631. [Pg.117]

S. Chen, J. Oh, S.O. Kim, Y.-H. Kim, Y. Ishii, R.S. Ruolf, Chemical structures of hydrazine-treated graphene oxide and generation of aromatic nitrogen doping, Nat. Commun. 3 (2012) 638. [Pg.384]

FTO Fluorine doped Tin Oxide GC glassy carbon N-G nitrogen-doped graphene CoPc Cobaltfll) phthalocyanine CoPc(SBu)8 Cobalt(ll) octabutylthiophthalocyanine FePc(SBu 8 lron(ll)octabutylthiophthalocyanine 2-ME 2-mercaptoethanol CoTCACIPc Cobalt(ll)... [Pg.298]

FeOx NGr-C=lron oxides surrounded by nitrogen-doped-graphene sh immobilized on carbon support... [Pg.3]

Yu, D., Wei, L., Jiang, W. et al. 2013. Nitrogen doped holey graphene as an efficient metal-free multifunctional electrochemical catalyst for hydrazine oxidation and oxygen reduction. Nanoscale 5 3457-3464. [Pg.351]

Mahyari M, Laeini MS, Shaabani A. Aqueous aerobic oxidation of alkyl arenes and alcohols catalyzed by copper(II) phthalocyanine supported on three-dimensional nitrogen-doped graphene at room temperamre. Chem Commun. 2014 50 7855-7857. Kumar A, Kumar VP, Kumar BP, KomandurW, Chary VR. Vapor phase oxidation of benzyl alcohol over gold nanoparticles supported on mesoporous Ti02- Catal Lett. 2014 144 1450-1459. [Pg.172]

For ES development, XPS is usually used to examine the oxidation states of different pseudocapacitive materials. A study of this use examined the oxidation states of ruthenium oxide powders with various water contents [38,39]. XPS is also used to study electrode functionalization through elemental analysis. For example, it can be used to investigate and improve the concentrations and types of nitrogen groups created by doping graphene and CNTs by various procedures. XPS also provides chemical characterization analysis for advanced electrolytes [40,41]. All these data help researchers determine the correlation between chemical structures and the capacitive characteristics of materials. [Pg.309]


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Graphene

Graphene oxide

Graphenes

Nitrogen-doped graphene

Oxidative doping

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