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Dania Olmos Díaz

Docencia

Imagen de Dania Olmos Díaz

GRADOS E INGENIERÍAS:

  • Química I
  • Ciencia e Ingeniería de Materiales
  • Fundamentos Químicos de la Ingeniería
  • Caracterización de Materiales y Defectos

 

POSTGRADOS:

  • Máster en Ciencia e Ingeniería de Materiales
  • Microscopía de Fuerza Atómica

Publicaciones

  • A fluorescence method to study the distribution of stresses in polymer materials”. D. Olmos, A.J. Aznar , J. González-Benito, J. Baselga  Journal of Materials Processing Technology 2003, 143-144, 495-500.
  • Kinetic study at the cure process of the silica microfibers/epoxy interface using pyrene fluorescence response”. J. González-Benito, D. Olmos, P.G. Sánchez, A.J. Aznar, J. Baselga. Journal of Materials Processing Technology 2003, 143-144, 153-157
  • Hydrolytic damage of the silane coupling region in coated silica microfibers. pH and coating type effect”. D. Olmos, J. González-Benito, A.J. Aznar, J. Baselga  Journal of Materials Processing Technology 2003, 143-144, 82-86.
  • Kinetic study of the epoxy curing in the E-glass fiber/epoxy interface using dansyl fluorescence”. D. Olmos, A.J. Aznar, J. Baselga and J. González-Benito. Journal of Colloid and Interface Science, 2003, 267, 117-126.
  • Fluorescent Labels to Study Thermal Transitions in Epoxy/Silica Composites”. R. Albalá, D. Olmos, A.J. Aznar, J. Baselga and J. González-Benito. Journal of Colloid and Interface Science, 2004, 277, 71-78.
  • Kinetic Study of the Epoxy Curing at the Silica Particles/Epoxy Interface Using the Fluorescence of Pyrene Label”, D. Olmos, A.J. Aznar, J. González-Benito. Polymer Testing, 2005, 24, 275-283.
  • Complementary Characterization by Fluorescence and AFM of Polyaminosiloxane Glass Fibers Coatings”, S.G. Turrion, D. Olmos, J. González-Benito. Polymer Testing, 2005, 24, 301-308.
  • Fluorescence response from anthracene labeled polystyrene to study its thermal transitions”, S.G. Turrión, D. Olmos, N. Ekizoglou, J. González-Benito, Polymer, 2005, 46, 4023-4031.
  • Cure Process and Reaction-Induced Phase Separation in a diepoxy-diamine/PMMA Blend. Nanoscale monitorization by Steady State Fluorescence and FTIR (Near and Medium range)”, D. Olmos and J. González-Benito, Colloid and Polymer Science, 2006, 284: 654-667.
  • The Nature of the Glass Fibre Surface and its Effect in the Water Absorption of Glass Fibre/Epoxy Composites. The use of Fluorescence to Obtain Information at the interface”, D. Olmos and J. González-Benito, Composite Science and Technology, 2006, 66, 2758-2768.
  • Visualization of the morphology at the interphase of glass fibre reinforced epoxy-thermoplastic polymer composites. D. Olmos, J. González-Benito, European Polymer Journal, 2007, 2007, 1487-1500.
  • Real dispersion of isolated fumed silica nanoparticles in highly filled PMMA prepared by high energy ball milling. P.D. Castrillo, D. Olmos, D.R. Amador and J. González-Benito.J. Colloid & Interface Science, 2007, 308, 318-324.
  • Thin film morphology in triblock terpolymers with one and two crystallizable blocks. .Boschetti-De-Fierro, L.Spindler, G.Reiter, D.Olmos, S.Magonov, V.Abetz. Macromolecules, 2007, 40, 5487-5496.
  • The effect of surface modification of silica microfillers in an epoxy matrix on the thermo-mechanical properties. D.Olmos, I.Mondragón, J.Baselga, J.González-Benito. Journal of Adhesion Science and Technology, 2008, 22, 1443-1459.
  • Novel Polymer Composites Based on a Mixture of Preformed Nanosilica-Filled Poly(methyl methacrylate) Particles and a Diepoxy/Diamine Thermoset System. D. Castrillo, D. Olmos and J. González-Benito. J. Applied Polymer Science, 2009, 111, 2062-2070.
  • Crystallization and final morphology of HDPE: Effect of the high energy ball milling and the presence of TiO2 nanoparticles. Olmos, C. Dominguez, P.D. Castrillo, J.González-Benito. Polymer, 2009, 50, 1732-1742.
  • Kaolin-epoxy-based nanocomposites: A complementary study of the epoxy curing by FTIR and fluorescence. P.D. Castrillo, D. Olmos, J.M. Torkelson, J. González-Benito. Polymer Composites, 2010, 31(5), 781-791.
  • Composites formed by glass fibers and PS-modified epoxy matrix. Influence of the glass fibers surface on the morphologies and mechanical properties of the interphases generated. D. Olmos and J. González-Benito. Polymer Composites, 2010, 31(6), 946-955.
  • Phase-Separation Process in a Poly(methyl methacrylate)-Modified Epoxy System: A Novel Approach to Understanding the Effect of the Curing Temperature on the Final Morphology. D. Olmos, A.Loayza, J. González-Benito. Journal of Applied Polymer Science, 2010, 117(5), 2695-2706.
  • Effects of ozone in surface modification and thermal stability of SEBS block copolymers. C. Peinado, T. Corrales, F. Catalina, S. Pedron, VRS Quiteria, MD Parellada, JA Barrio, D. Olmos J. Gonzalez-Benito. Polymer Degradation and Stability, 2010, 95(6), 975-986.