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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Trannoy, Virgile
Laboratoire des Sciences des Procédés et des Matériaux
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (5/5 displayed)
- 2023Grain-size effect on Cr3+ and F-centres photoluminescence in nanophase MgAl2O4 ceramicscitations
- 2023Grain-size effect on Cr$^{3+}$ and F-centres photoluminescence in nanophase MgAl$_2$O$_4$ ceramicscitations
- 2021Lanthanide Isophthalate Metal‐Organic Frameworks: Crystal Structure, Thermal Behavior, and White Luminescencecitations
- 2014Towards bottom-up nanopatterning of Prussian blue analoguescitations
- 2014Towards bottom-up nanopatterning of Prussian blue analoguescitations
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article
Towards bottom-up nanopatterning of Prussian blue analogues
Abstract
<jats:p>Ordered nanoperforated TiO<jats:sub>2</jats:sub> monolayers fabricated through sol–gel chemistry were used to grow isolated particles of Prussian blue analogues (PBA). The elaboration of the TiO<jats:sub>2</jats:sub>/CoFe PBA nanocomposites involves five steps. The samples were characterized by scanning electron microscopy (SEM), atomic force microscopy (AFM), infrared spectroscopy and X-ray photoelectron spectroscopy (XPS) all along the synthesis process. Selected physico-chemical parameters have been varied in order to determine the key steps of the synthesis process and to optimize it. This study is an important step towards the full control of the fabrication process.</jats:p>