Laboratoire de : Techniques Innovantes de Préservation de l'Environnement

Département de : Chimie

Faculté de : Sciences Exactes

Bilan scientifique
 

Production scientifique des équipes du laboratoire et/ou Unité

a) Publications Internationales (une par ligne en donnant obligatoirement : le(s) auteur(s), le nom de la revue, le volume, l’année, le lien vers la revue/URL)

01

High power impulse magnetron sputtering (HIPIMS) and traditional pulsed sputtering (DCMSP) Ag-surfaces leading to E. coli inactivation.

O. Baghriche, A.P. Ehiasarian, E. Kusiak-Nejman, C. Pulgarin, R. Sanjines, A.W. Morawskic, J. Kiwi.

Journal of Photochemistry and Photobiology A: Chemistry 227 (2012) 11-17.

www.elsevier.com/locate/jphotochem

02

Antibacterial Ag–ZrN surfaces promoted by subnanometric ZrN-clustersdeposited by reactive pulsed magnetron sputtering.

O. Baghriche, J. Kiwi, C. Pulgarin, R. Sanjines.

Journal of Photochemistry and Photobiology A: Chemistry 229 (2012) 39– 45.

www.elsevier.com/locate/jphotochem

03

Ag-surfaces sputtered by DC and pulsed DC-magnetron sputtering effective in bacterial inactivation: Testing and characterization.

O. Baghriche, C. Ruales, R. Sanjines, C. Pulgarin, A. Zertal, I. Stolitchnov, J. Kiwi.

Surface & Coatings Technology 206 (2012) 2410–2416.

www.elsevier.com/locate/surfcoat

04

Advantages of highly ionized pulse plasma magnetron sputtering (HIPIMS) of silver for improved E. coli inactivation.

Oualid Baghriche, Abed Zertal, Arutiun P. Ehiasarian, R. Sanjines, Cesar Pulgarin, Ewelina Kusiak-Nejman, Antoni W. Morawski, John Kiwi.

Thin Solid Films 520 (2012) 3567–3573.

www.elsevier.com/locate/tsf

05

Photocatalysis/catalysis by innovative TiN and TiN-Ag surfaces inactivate bacteria under visible light.

S. Rtimi, O. Baghriche, R. Sanjines, C. Pulgarin, M. Ben-Simon, J.-C. Lavanchy, A. Houas, J. Kiwi.

Applied Catalysis B: Environmental 123–124 (2012) 306-315.

www.elsevier.com/locate/apcatb

06

Design, testing and characterization of innovative TiN–TiO2 surfacesinactivating bacteria under low intensity visible light.

S. Rtimi, O. Baghriche, C. Pulgarin, R. Sanjines and J. Kiwi.

RSC Advances 2 (2012) 8591–8595.

www.rsc.org/advances

07

Influence of humic substances on the riboflavin photosensitized transformation of 2,4,6-trimethylphenol.

S. Kouras-Hadef, A. Amine-Khodja, S. Halladja and C. Richard

Journal of Photochemistry and Photobiology, A : Chemistry 229 (2012) 33-38.

www.elsevier.com/locate/jphotochem

 

 

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