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Thin film

Liquid crystal bilayers (3.3nm)
Liquid crystal bilayers (3.3nm)
AFM scan on Liquid Crystal precursor film
Amphiphilic molecules self-organisation (5.5nm)
Amphiphilic molecules self-organisation (5.5nm)
Columnar Liquid Crystal
Columnar Liquid Crystal
Adhesive organic residue on SiO2 surface (1.2nm)
Copolymer microstructure 2D
Copolymer microstructure 3D
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Patterns and Pathways in Colloidal Nanoparticle Assemblies
Resin patterns (50-60nm) elaborated by laser writing technology
Nanopatterning structures (0-100nm)
Resin patterns (50-60nm) elaborated by laser writing technology (Sarfus 3D image)
Thermo-responsive polymer film characterized in water (55°C)
Visualization of Graphene Oxide sheets

Videos

8CB wetting & evaporation

Application Notes

SEEC Microscopy : Study of dibloc copolymer microphase structuration

This publication presents the study of the microphase structuration of a thin layer of dibloc copolymer by SEEC Microscopy. Initially, the dibloc copolymer forms an homogeneous layer, meaning that the material is not microphase separated and so the PS and

SARFUS : Characterization of adhesive nanometric layer on SiO2 surface

In this work, two well-known protective adhesives designed for microelectronic applications have been studied with the Sarfus technique. Theses adhesives are described as providing clean removal during masking operations but the presence of nanometric org

Study of PDMS and 8CB prewetting films by Sarfus

The prewetting films of a methyl-terminated PDMS droplet and 8 CB liquid crystal are characterized by SARFUS. Thin layers of 0.7 and 3.3 nm are measured on both systems, respectively

Characterization of a thermo-responsive polymer film in air and in water

A dynamic study of a thermo-responsive nanometer-thin polymer film is performed with the Sarfus 3D-IMM equipment. The ability to carry out an analysis in air as well as in liquid and to easily characterize a thermal transition with a live visualization of

Publications

"Fingering Instabilities in Dewetting Nanofluids"

E. Pauliac-Vaujour, A. Stannard, C. P. Martin, M. O. Blunt, I. Notingher, P. J. Moriarty, I. Vancea and U. Thiele Phys. Rev. Lett. 100, 176102 (2008)

"Solutions of Negatively Charged Graphene Sheets and Ribbons"

Cristina Valles, Carlos Drummond, Hassan Saadaoui, Clascidia A. Furtado, Maoshuai He, Olivier Roubeau, Luca Ortolani, Marc Monthioux and Alain Penicaud J. Am. Chem. Soc., 2008, 130 (47), pp 15802-15804

"Surface Modifications Using a Water-Stable Silanetriol in Neutral Aqueous Media"

Stefan Spirk, Heike M. Ehmann, Rupert Kargl, Natascha Hurkes, Martin Reischl, Jiri Novak, Roland Resel, Ming Wu, Rudolf Pietschnig, and Volker Ribitsch ACS Appl. Mater. Interfaces, 2010, 2 (10), pp 2956-2962

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Sarfus HR Video

SarfusHRVideoImage

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