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Fayna Mammeri

Researcher at University of Paris

Publications -  46
Citations -  1633

Fayna Mammeri is an academic researcher from University of Paris. The author has contributed to research in topics: Nanoparticle & Hybrid material. The author has an hindex of 16, co-authored 46 publications receiving 1325 citations. Previous affiliations of Fayna Mammeri include University of Poitiers & Saint-Gobain.

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Methods for preparing polymer-decorated single exchange-biased magnetic nanoparticles for application in flexible polymer-based films

TL;DR: The alternative two-step strategy leads to better dispersed polymer-decorated magnetic particles, and the resulting nanohybrids can be considered as valuable building blocks for flexible, magnetic polymer-based devices.
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Design of CdS Quantum Dots / Multi-Walled Carbon Nanotubes Hybrid Structures for Photovoltaic Applications

TL;DR: In this article, the preparation of multi-walled carbone nanotubes (CNTs) and CdS nanoparticles based hybrid materials is presented. And the authors aim at comparing two kinds of CNTs' functionalization by thiol groups in order to demonstrate that the surface chemistry done on the CNT can direct the morphology of the nanohybrids.
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Design and Functionalization of Magnetic Core-Shell Oxide Nanoparticles Exhibiting Exchange Bias Features

TL;DR: In this paper, a core-shell magnetic nanoparticles (CSNPs) composed of a ferrimagnetic core (CoFe2O4) embedded in an antiferromagnetic shell (CoO) were produced using seed mediated growth in a polyol.
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Design of Functionalized Fe3O4 Nanoparticles for Elaboration of Nanostructured Films with Magnetic Properties

TL;DR: In this paper, the authors used the Langmuir Blodgett technique to organize functionalized magnetite nanoparticles in large patterns using the Langevin diagram and then coated with amphiphilic molecules.
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Mechanical Properties of Polymer-Based Hybrid Films: Tailoring the Hybrid Interface Using Soft Chemistry

TL;DR: In this article, the authors illustrate both experimental approaches allowing for the fabrication of PMMA based nanocomposites and their characterization employing nanoindentation, and demonstrate both experimental and experimental approaches for the characterization of nano-indentations.