Results 1 to 10 of about 452 (141)

Theory of Chiral Electrodeposition by Chiral Micro-Nano-Vortices under a Vertical Magnetic Field -1: 2D Nucleation by Micro-Vortices [PDF]

open access: yesMagnetochemistry, 2022
Remarkable chiral activity is donated to a copper deposit surface by magneto-electrodeposition, whose exact mechanism has been clarified by the three-generation model.
Ryoichi Morimoto   +8 more
doaj   +6 more sources

Theory of Chiral Electrodeposition by Micro-Nano-Vortexes under a Vertical Magnetic Field-2: Chiral Three-Dimensional (3D) Nucleation by Nano-Vortexes [PDF]

open access: yesMagnetochemistry
The contributions of magnetohydrodynamic (MHD) vortexes to chiral electrodeposition in a vertical magnetic field were theoretically examined based on the three-generation model of the 2D nucleus, 3D nucleus, and screw dislocation; for the vortexes to ...
Ryoichi Morimoto   +7 more
doaj   +6 more sources

Epitaxial Electrodeposition of Chiral Films Using Chiral Precursors [PDF]

open access: yes, 2012
Chiral drugs have played an important role in driving the market for past few decades. Currently, more than half of the drugs marketed are chiral. [1-4] It is well established that chiral drugs often differ in their pharmacological, toxicological and pharmacokinetic properties.
Rakesh Gudavarthy, Elizabeth A.
exaly   +4 more sources

Chiral Electrodeposition [PDF]

open access: yesElectrochemical Society Interface, 2004
Chirality is ubiquitous in Nature. One enantiomer of a molecule is often physiologically active, while the other enantiomer may be either inactive or toxic.
Switzer, Jay A.
exaly   +3 more sources

One-Step Electrodeposition of Chiral Plasmonic Gold Nanostructures for Enantioselective Sensing

open access: yesElectrochemistry, 2022
Chiral plasmonic nanostructures attract much attention because of their potential applications to advanced optical materials and enantioselective sensors. However, the latter has been fabricated on the basis of top-down methods, which take time and cost.
Igseon GU, Takuya ISHIDA, Tetsu TATSUMA
doaj   +2 more sources

A smart “Swiss-knife” dithiaaza[7]helicene electroactive tool: adding 3D push-pull features to inherent chirality and film electrodeposition ability [PDF]

open access: yesElectrochimica Acta
A new dithiaaza[7]helicene of remarkably multifaceted nature and functional properties is introduced and studied by comparison with a pool of simpler thia-or azahelicenes and related model molecules. Its helical conjugated backbone endows it with interesting spectroscopic and electrochemical features as well as with powerful inherent chirality.
Clara Baldoli   +2 more
exaly   +4 more sources

Chirality of magneto-electrodeposited metal film electrodes

open access: yesScience and Technology of Advanced Materials, 2008
The chiral electrode behaviors of magneto-electrodeposited (MED) Ag and Cu films were examined for the electrochemical reactions of D-glucose, L-glucose and L-cysteine.
Iwao Mogi and Kazuo Watanabe
doaj   +4 more sources

Observation of nanoparticle coalescence during core-shell metallic nanowire growth in colloids via nanoscale imaging [PDF]

open access: yesNature Communications
The surface morphology and shape of crystalline nanowires significantly influence their functional properties, including phonon transport, electrocatalytic performance, to name but a few.
Dahai Yang   +15 more
doaj   +2 more sources

Breaking of Odd Chirality in Magnetoelectrodeposition

open access: yesMagnetochemistry, 2022
Electrodeposition under magnetic fields (magnetoelectrodeposition; MED) can induce surface chirality on copper films. The chiral signs of MED films should depend on the magnetic field polarity; namely, the reversal of the magnetic field causes the ...
Iwao Mogi   +3 more
doaj   +1 more source

Chirality of electrodeposits grown in a magnetic field [PDF]

open access: yesPhysical Review E, 2004
Electrodeposits grown around a point cathode in a flat, horizontal electrochemical cell have fractal form. When grown in the presence of a perpendicular applied magnetic field, the deposits develop a spiral structure with chirality which reverses on switching the field direction.
T R Ní, Mhíocháin, J M D, Coey
openaire   +2 more sources

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