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Photo de NOTTELET Benjamin
NOTTELET Benjamin      
Fonction : MCU
Thème de Recherche: Biopolymères Artificiels
benjamin.nottelet_AT_umontpellier.fr
0411759697
Bureau: 217, Etg: 2, Bât: I - Site : Faculté de pharmacie

Domaines de Recherche:
  • Chimie/Polymères
  • Sciences du Vivant/Ingénierie biomédicale/Biomatériaux
Dernieres productions scientifiques :
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+ Direct Photomodification of Polymer Surfaces: Unleashing the Potential of Aryl-Azide Copolymers doi link

Auteur(s): Schulz A., STOCCO Antonio, Bethry A., Lavigne Jean, Coudane J., Nottelet B.

(Article) Publié: Advanced Functional Materials, vol. 28 p. (2018)

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+ PLA scaffolds production from Thermally Induced Phase Separation: Effect of process parameters and development of an environmentally improved route assisted by supercritical carbon dioxide doi link

Auteur(s): Gay S., Lefebvre G., Bonnin M., Nottelet B., Boury F., Gibaud A., Calvignac B.

(Article) Publié: -The Journal Of Supercritical Fluids, vol. 136 p.123 - 135 (2018)

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+ Modelling of mechanical properties of a PLA-b-PEG-b-PLA biodegradable triblock copolymer during hydrolytic degradation hal link

Auteur(s): Breche Quentin, Chagnon Grégory, Girard Edouard, Nottelet B., Garric X., Machado Guilherme, Favier Denis

Conference: European Mechanics of Materials Conference (EMMC15) (Bruxelles, BE, 2016-09-07)

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+ MRI-visible polymer based on poly(methyl methacrylate) for imaging applications doi link

Auteur(s): Younis M., Darcos V., Paniagua C., Ronjat P., Lemaire Laurent, Nottelet B., Garric X., Bakkour Youssef, El Nakat John Hanna, Coudane J.

(Article) Publié: Rsc Advances, vol. 6 p.5754-60 (2016)

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+ Redox Reducible and Hydrolytically Degradable PEG–PLA Elastomers as Biomaterial for Temporary Drug-Eluting Medical Devices doi link

Auteur(s): Rupnik Simona, Buwalda S., Déjean S., Bethry A., Garric X., Coudane J., Nottelet B.(Corresp.)

(Article) Publié: Macromolecular Bioscience, vol. p. (2016)

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