Functional surfaces through the creation of adhesion and charged patterns on azopolymer surface relief gratings

We show that an azopolymer can be used to create a supramolecular architecture in a parallel process with patterned surface properties. By illuminating with an interference pattern, we created adhesion and charge patterns that reflect the molecular ordering. We studied the recording process in two l...

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Autor principal: Capeluto, María Gabriela
Otros Autores: Falcione, Rebeca, Salvador, R.F, Eceiza, A., Goyanes, S., Ledesma, S.A
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: Elsevier B.V. 2019
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Acceso en línea:Registro en Scopus
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Sumario:We show that an azopolymer can be used to create a supramolecular architecture in a parallel process with patterned surface properties. By illuminating with an interference pattern, we created adhesion and charge patterns that reflect the molecular ordering. We studied the recording process in two limit situations. When birefringence dominates over mass transport, an adhesion pattern was recorded even in absence of a surface relief grating (SRG). When mass transport dominates, we measured a higher frequency adhesion and relief patterns on top of the SRG. We measured an increased negative charge in the regions where molecules are expected to be parallel aligned in trans conformational state. © 2019 Elsevier B.V.
Bibliografía:Sosa-Vargas, L., Kim, E., Jean Attias, A., Beyond “decorative” 2D supramolecular self-assembly: strategies towards functional surfaces for nanotechnology (2017) Mater. Horiz., 4, pp. 570-583
Otte, F.L., Lemke, S., Schütt, C., Krekiehn, N.R., Jung, U., Magnussen, O.M., Herges, R., Ordered monolayers of free-standing porphyrins on gold (2014) J. Am. Chem. Soc., 136 (32), pp. 11248-11251
Huang, Y., Duan, X., Wei, Q., Lieber, C.M., Directed assembly of one-dimensional nanostructures into functional networks (2001) Science, 291 (5504), pp. 630-633
Muñoz-Bonilla, A., Fernández-García, M., Rodríguez-Hernández, J., Towards hierarchically ordered functional porous polymeric surfaces prepared by the breath figures approach (2014) Prog. Polym. Sci., 39 (3), pp. 510-554
Dhotel, A., Chen, Z., Delbreilh, L., Youssef, B., Saiter, J.-M., Tan, L., Molecular motions in functional self-assembled nanostructures (2013) Int. J. Mol. Sci., 14 (2), pp. 2303-2333
Sekkat, Z., Optical tweezing by photomigration (2016) Appl. Opt., 55, p. 259
Saphiannikova, M., Toshchevikov, V., Optical deformations of azobenzene polymers: orientation approach vs. photofluidization concept (2015) J. Soc. Inf. Disp., 23 (4), pp. 146-153
Hurduc, N., Donose, B.C., Macovei, A., Paius, C., Ibanescu, C., Scutaru, D., Hamel, M., Rocha, L., Direct observation of athermal photofluidisation in azo-polymer films (2014) Soft Matter, 10, pp. 4640-4647
Ambrosio, A., Marrucci, L., Borbone, F., Roviello, A., Maddalena, P., Light-induced spiral mass transport in azo-polymer films under vortex-beam illumination (2012) Nat. Commun., 3, p. 989
Capeluto, M.G., Salvador, R.F., Eceiza, A., Goyanes, S., Ledesma, S.A., Azopolymer film as an actuator for organizing multiwall carbon nanotubes (2017) Opt. Mater., 66, pp. 247-252
Natansohn, A., Rochon, P., Photoinduced motions in azo-containing polymers (2002) Chem. Rev., 102 (11), pp. 4139-4176
Barrett, C.J., Natansohn, A.L., Rochon, P.L., Mechanism of optically inscribed high-efficiency diffraction gratings in azo polymer films (1996) J. Phys. Chem., 100 (21), pp. 8836-8842
Lagugne-Labarthet, F., Buffeteau, T., Sourisseau, C., Molecular orientations in azopolymer holographic diffraction gratings as studied by Raman confocal microspectroscopy (1998) J. Phys. Chem. B, 102 (30), pp. 5754-5765
Lagugne-Labarthet, F., Sourisseau, C., Schaller, R.D., Saykally, R.J., Rochon, P., Chromophore orientations in a nonlinear azopolymer diffraction grating: even and odd parameters from far-field Raman and near-field second harmonic generation microscopes (2004) J. Phys. Chem. B, 108 (44), pp. 17059-17068
Yadavalli, N.S., Loebner, S., Papke, T., Sava, E., Hurduc, N., Santer, S., A comparative study of photoinduced deformation in azobenzene containing polymer films (2016) Soft Matter, 12, pp. 2593-2603
Kim, K.-H., Jeong, Y.-C., Nanoindentation study of optically patterned surface relief grating of azobenzene polymers (2016) Optic Express, 24, pp. 25242-25249
Yager, K.G., Barrett, C.J., Photomechanical surface patterning in azo-polymer materials (2006) Macromolecules, 39, pp. 9320-9326
Lin, J.H., Lai, N.D., Han Chiu, C., Lin, C.-Y., Rieger, G.W., Young, J.F., Chien, F.S.-S., Hsu, C.C., Fabrication of spatial modulated second order nonlinear structures and quasi-phase matched second harmonic generation in a poled azo-copolymer planar waveguide (2008) Optic Express, 16, pp. 7832-7841
Chang, H.J., Kang, B., Choi, H., Wu, J.W., Microstructure of a poled surface-relief grating and its electro-optic response (2005) Opt. Lett., 30, pp. 183-185
Lai, C.-Y., Raj, G., Liepuoniute, I., Chiesa, M., Naumov, P., Direct observation of photoinduced trans−cis isomerization on azobenzene single crystal (2017) Cryst. Growth Des, 17, pp. 3306-3312
Müller, M., Gonzalez-Garcia, Y., Pakula, C., Zaporojtchenko, V., Strunskus, T., Faupel, F., Herges, R., Magnussen, O.M., In situ atomic force microscopy studies of reversible light-induced switching of surface roughness and adhesion in azobenzene-containing PMMA films (2011) Appl. Surf. Sci., 257 (17), pp. 7719-7726
Stiller, B., Geue, T., Morawetz, K., Saphiannikova, M., Optical patterning in azobenzene polymer films (2005) J. Microsc., 219, pp. 109-114
Gutierrez, J., Tercjak, A., Peponi, L., Mondragon, I., Conductive properties of inorganic and organic TiO2/Polystyrene-block-Poly (ethylene oxide) nanocomposites (2009) J. Phys. Chem. C, 113, pp. 8601-8605
Cambiasso, J., Goyanes, S., Ledesma, S., Holographic gratings recorded in poly(lactic acid)/azo-dye films (2015) Opt. Mater., 47, pp. 72-77
Schab-Balcerzak, E., Synthesis, characterization, and study of photoinduced optical anisotropy in polyimides containing side azobenzene units (2009) J. Phys. Chem. A, 113, pp. 8765-8780
Pawlik, G., Mitus, C., Miniewicz, A., Sobolewska, A., Chemistry, T., Fine Structure of Surface Relief Gratings: Experiment and a Generic Stochastic Monte Carlo Model of the Photoinduced Mass Transport in Azo-Polymer (2014), p. 26002; Fabbri, F., Garrot, D., Lahlil, K., Boilot, J.P., Lassailly, Y., Peretti, J., Evidence of two distinct mechanisms driving photoinduced matter motion in thin films containing azobenzene derivatives (2011) J. Phys. Chem. B, 115, p. 1363
Lee, S., Shin, J., Lee, Y.-H., Fan, S., Park, J.-K., Directional photofluidization lithography for nanoarchitectures with controlled shapes and sizes (2010) Nano Lett., 10, pp. 296-304
Weis, P., Wang, D., Wu, S., Visible-light-responsive azopolymers with inhibited π−π stacking enable fully reversible photopatterning (2016) Macromolecules, 49, pp. 6368-6373
Han, J., Yan, D., Shi, W., Ma, J., Yan, H., Wei, M., Evans, D.G., Duan, X., Layer-by-Layer ultrathin films of azobenzene-containing polymer/layered double hydroxides with reversible photoresponsive behavior (2010) J. Phys. Chem. B, 114 (17), pp. 5678-5685
Yu, Z., Hecht, S., Remote control over folding by light (2016) Chem. Commun., 52, p. 6639
Hunter, C.A., Sanders, J.K.M., The nature of pi-pi interactions (1990) J. Am. Chem. Soc., 112, pp. 5525-5534
Rianna, C., Calabuig, A., Ventre, M., Cavalli, S., Pagliarulo, V., Grilli, S., Ferraro, P., Netti, P.A., Reversible holographic patterns on azopolymers for guiding cell adhesion and orientation (2015) ACS Appl. Mater. Interfaces, 7 (31), pp. 16984-16991
ISSN:09253467
DOI:10.1016/j.optmat.2019.02.036