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Abdelmalek Benkouider

Explore the profile of Abdelmalek Benkouider including associated specialties, affiliations and a list of published articles. Areas
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Articles 6
Citations 23
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Recent Articles
1.
Naffouti M, Backofen R, Salvalaglio M, Bottein T, Lodari M, Voigt A, et al.
Sci Adv . 2018 Jan; 3(11):eaao1472. PMID: 29296680
Dewetting is a ubiquitous phenomenon in nature; many different thin films of organic and inorganic substances (such as liquids, polymers, metals, and semiconductors) share this shape instability driven by surface...
2.
Naffouti M, David T, Benkouider A, Favre L, Delobbe A, Ronda A, et al.
Small . 2016 Oct; 12(44):6115-6123. PMID: 27717242
Thin film dewetting can be efficiently exploited for the implementation of functionalized surfaces over very large scales. Although the formation of sub-micrometer sized crystals via solid-state dewetting represents a viable...
3.
Naffouti M, David T, Benkouider A, Favre L, Cabie M, Ronda A, et al.
Nanotechnology . 2016 Jun; 27(30):305602. PMID: 27302611
We report on a novel method for the implementation of core-shell SiGe-based nanocrystals combining silicon on insulator dewetting in a molecular beam epitaxy reactor with an ex situ Ge condensation...
4.
Naffouti M, David T, Benkouider A, Favre L, Ronda A, Berbezier I, et al.
Nanoscale . 2016 Mar; 8(14):7768. PMID: 26991596
Correction for 'Fabrication of poly-crystalline Si-based Mie resonators via amorphous Si on SiO2 dewetting' by Meher Naffouti, et al., Nanoscale, 2016, 8, 2844-2849.
5.
Naffouti M, David T, Benkouider A, Favre L, Ronda A, Berbezier I, et al.
Nanoscale . 2016 Jan; 8(5):2844-9. PMID: 26763192
We report the fabrication of Si-based dielectric Mie resonators via a low cost process based on solid-state dewetting of ultra-thin amorphous Si on SiO2. We investigate the dewetting dynamics of...
6.
Abbarchi M, Naffouti M, Vial B, Benkouider A, Lermusiaux L, Favre L, et al.
ACS Nano . 2014 Nov; 8(11):11181-90. PMID: 25365786
Subwavelength-sized dielectric Mie resonators have recently emerged as a promising photonic platform, as they combine the advantages of dielectric microstructures and metallic nanoparticles supporting surface plasmon polaritons. Here, we report...