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  • Electrocatalytic oxidation of hydrazine and hydroxylamine by graphene oxide-Pd nanoparticle-modified glassy carbon electrode.

Electrocatalytic oxidation of hydrazine and hydroxylamine by graphene oxide-Pd nanoparticle-modified glassy carbon electrode.

Journal of nanoscience and nanotechnology (2013-03-02)
Eunhee Lee, Daekun Kim, Jung-Min You, Seul Ki Kim, Mira Yun, Seungwon Jeon
ABSTRACT

Pd nanoparticle catalysts supported by thiolated graphene oxide (tGO) on a glassy carbon electrode (GCE), and denoted as tGO-Pd/GCE, are used in this study for the electrochemical determination of hydroxylamine and hydrazine. The physicochemical properties of tGO-Pd were characterized by transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and electrochemical impedance spectroscopy (EIS). They showed strong catalytic activity toward the oxidation of hydroxylamine and hydrazine. Cyclic voltammetry (CV) and amperometry were used to characterize the sensors' performances. The detection limits of hydroxylamine and hydrazine by tGO-Pd/GCE were 0.31 and 0.25 microM (s/n = 3), respectively. The sensors' sensitivity, selectivity, and stability were also investigated.

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Sigma-Aldrich
Idrossilamina, 50 wt. % in H2O
Sigma-Aldrich
Idrazina, N2H4 64-65 %, reagent grade, ≥97%
Sigma-Aldrich
Hydrazine solution, 35 wt. % in H2O
Sigma-Aldrich
Hydrazine sulfate salt, ACS reagent, ≥99.0%
Sigma-Aldrich
Idrossilamina, 50 wt. % in H2O, 99.999%
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Hydrazine solution, 1.0 M in THF
Sigma-Aldrich
Hydrazine solution, 1.0 M in ethanol
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Hydrazine sulfate salt, puriss. p.a., ACS reagent, ≥99.0%
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Hydrazine dihydrochloride, ≥98%
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Hydrazine solution, 1 M in acetonitrile
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Hydrazine hemisulfate salt, ≥98%