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Electrochemical desulfurative borylation of thiols, disulfides, thioethers and thioacetals. [PDF]
Kuzmin J +3 more
europepmc +1 more source
Strategic synthesis of FLPClusters toward catalysis. [PDF]
Geng Z +14 more
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Electrochemical determination of ciprofloxacin using a MIL-101/reduced graphene oxide-modified electrode. [PDF]
Man NQ +8 more
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Pd–Ir alloy as an anode material for borohydride oxidation [PDF]
Abstract A Pd–Ir alloy (1:1) coated on microfibrous carbon (11 μm diameter) supported on a titanium plate was evaluated as an electrode for the anodic oxidation of borohydride. The hydrogen generated, due to the parallel reaction of borohydride hydrolysis, was measured during the electrolysis obtaining less than 0.1 cm3 min−1 H2 between −1 and 0 V vs.
Irène Merino-Jimenez +2 more
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Electrocatalysts for the anodic oxidation of borohydrides
Electrochimica Acta, 2004Anodic performances of alkali borohydrides on several electrocatalysts such as Ni, Raney Ni, Pd, Pt, Cu, Au have been studied in an effort to develop suitable electrode materials for a borohydride-fueled fuel cell. The open-circuit potentials (OCPs), polarization performances, and hydrogen evolution behaviors were examined in a three-electrode system ...
Bin Hong Liu +2 more
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Analysis of the kinetics of borohydride oxidation in Cu anode for direct borohydride fuel cell
Journal of Power Sources, 2012Abstract A multi-step mechanism is discussed for the oxidation of BH 4 − on Cu anode in NaOH solution. Polarization experiments are conducted in 2 M sodium hydroxide solutions with 0.5, 1.0, and 2.0 M NaBH 4 at 25, 50, and 75 °C, respectively. The rate-determining step is the electrochemical oxidation of B H 4 , ad − that reacted ...
Donghong Duan, Shibin Liu
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Anodic Oxidation of Alkali Borohydrides Catalyzed by Nickel
Journal of The Electrochemical Society, 2003AbstractFor Abstract see ChemInform Abstract in Full Text.
Bin Hong Liu +2 more
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Reduction of graphene oxide with substituted borohydrides
J. Mater. Chem. A, 2013The emergence of graphene as a next-generation material promises enhanced improvement in various fields of materials science. So far, the oxidation of graphite to graphite oxide and consequent reduction to chemically reduced graphene oxide is the most relevant method towards large scale production of graphene materials.
Chun Kiang Chua, Martin Pumera
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