Results 21 to 30 of about 71 (39)
Chiral Symmetry Breaking in Magnetoelectrochemical Etching with Chloride Additives. [PDF]
Mogi I, Aogaki R, Takahashi K.
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Magneto-Dendrite Effect: Copper Electrodeposition under High Magnetic Field. [PDF]
Miura M +8 more
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Highlighting spin selectivity properties of chiral electrode surfaces from redox potential modulation of an achiral probe under an applied magnetic field. [PDF]
Benincori T +6 more
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Surface Chirality in Rotational Magnetoelectrodeposition of Copper Films
学術論文(Ariticle)
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Breaking of Magnetic Field Dependence of Chirality in Magnetoelectrodeposition
Mogi, Iwao +2 more
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Zn-Mn alloy coating elaboration by magnetoelectrodeposition
Journal of Solid State Electrochemistry, 2021Zinc-manganese alloy coatings were electrodeposited using sulfate baths in the presence of a superimposed magnetic field up to 1 T parallel to the electrode surface. The effect of ratio [Zn2+]/[Mn2+] on the elaborated coatings has been investigated using chronoamperometric measurements with potentiostatic technique.
L. Allam +3 more
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Magnetoelectrodeposition of Ni-Mo-Cd alloy coating for improved corrosion resistance
Chemical Data Collections, 2021Abstract The attractiveness of electroplating in the production of high performance coatings is linked to large selection of operating variables coupled with diffusion controlled mass transport process at cathode-solution interface, and this allows tailoring of different properties of the coatings. In this direction, the present communication reports
Akshatha R. Shetty +1 more
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Enantioselective Recognition of Tartaric Acid on Magnetoelectrodeposited Copper Film Electrodes
Chemistry Letters, 2012Abstract Cu films were electrodeposited under a magnetic field of 5 T, and cyclic voltammograms (CVs) of the enantiomers of tartaric acid were investigated on the Cu film electrodes. The chiral behavior of the CVs was observed as the peak current difference between the enantiomers.
Iwao Mogi, Kazuo Watanabe
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ChemCatChem
AbstractApplying external magnetic field facilitates the oxygen evolution reaction (OER), but such a strategy is impractical for large‐scale applications. We introduce a scalable alternative by applying magnetic fields only during catalyst electrodeposition.
Bapi Ghorui +4 more
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AbstractApplying external magnetic field facilitates the oxygen evolution reaction (OER), but such a strategy is impractical for large‐scale applications. We introduce a scalable alternative by applying magnetic fields only during catalyst electrodeposition.
Bapi Ghorui +4 more
openaire +1 more source

