Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate Coating

Calcium phosphate coatings were formed on a Ti6Al4V substrate by electrodeposition under a high magnetic field up to 16 T. The magnetic field was parallelly applied to the vertical surface electrode. Changes in crystal morphology of calcium phosphates were investigated as a function of the magnetic...

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Main Authors: Anne-Lise Daltin, Jean-Paul Chopart
Format: Article
Language:English
Published: MDPI AG 2022-06-01
Series:Magnetochemistry
Subjects:
Online Access:https://www.mdpi.com/2312-7481/8/6/62
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author Anne-Lise Daltin
Jean-Paul Chopart
author_facet Anne-Lise Daltin
Jean-Paul Chopart
author_sort Anne-Lise Daltin
collection DOAJ
description Calcium phosphate coatings were formed on a Ti6Al4V substrate by electrodeposition under a high magnetic field up to 16 T. The magnetic field was parallelly applied to the vertical surface electrode. Changes in crystal morphology of calcium phosphates were investigated as a function of the magnetic field amplitude, and the results are discussed in terms of magnetic field effects. Magnetohydrodynamic convection due to the Lorentz force could considerably reduce the formation of volcano-like structures and generate more uniform deposits without changing Ca/P ratios.
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spelling doaj.art-1c2cb0b9494940099c280316e04a19e42023-11-23T17:40:15ZengMDPI AGMagnetochemistry2312-74812022-06-01866210.3390/magnetochemistry8060062Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate CoatingAnne-Lise Daltin0Jean-Paul Chopart1Matériaux et Ingénierie Mécanique (MATIM), University of Reims Champagne Ardenne, CEDEX 2, 51687 Reims, FranceMatériaux et Ingénierie Mécanique (MATIM), University of Reims Champagne Ardenne, CEDEX 2, 51687 Reims, FranceCalcium phosphate coatings were formed on a Ti6Al4V substrate by electrodeposition under a high magnetic field up to 16 T. The magnetic field was parallelly applied to the vertical surface electrode. Changes in crystal morphology of calcium phosphates were investigated as a function of the magnetic field amplitude, and the results are discussed in terms of magnetic field effects. Magnetohydrodynamic convection due to the Lorentz force could considerably reduce the formation of volcano-like structures and generate more uniform deposits without changing Ca/P ratios.https://www.mdpi.com/2312-7481/8/6/62calcium phosphatecrystal orientationelectrodepositionhydroxyapatitehigh magnetic fieldmagnetoelectrodeposition
spellingShingle Anne-Lise Daltin
Jean-Paul Chopart
Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate Coating
Magnetochemistry
calcium phosphate
crystal orientation
electrodeposition
hydroxyapatite
high magnetic field
magnetoelectrodeposition
title Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate Coating
title_full Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate Coating
title_fullStr Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate Coating
title_full_unstemmed Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate Coating
title_short Influence of a Constant Perpendicular High Magnetic Field on the Electrodeposition of Calcium Phosphate Coating
title_sort influence of a constant perpendicular high magnetic field on the electrodeposition of calcium phosphate coating
topic calcium phosphate
crystal orientation
electrodeposition
hydroxyapatite
high magnetic field
magnetoelectrodeposition
url https://www.mdpi.com/2312-7481/8/6/62
work_keys_str_mv AT annelisedaltin influenceofaconstantperpendicularhighmagneticfieldontheelectrodepositionofcalciumphosphatecoating
AT jeanpaulchopart influenceofaconstantperpendicularhighmagneticfieldontheelectrodepositionofcalciumphosphatecoating