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Projekt Druckansicht

TRR 6:  Physik von kolloidalen Dispersionen in äußeren Feldern

Fachliche Zuordnung Physik
Förderung Förderung von 2002 bis 2013
Projektkennung Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 5485412
 
Erstellungsjahr 2013

Zusammenfassung der Projektergebnisse

Keine Zusammenfassung vorhanden

Projektbezogene Publikationen (Auswahl)

  • Shearbanding and microstructure of colloids in shear flow, Faraday Discussion 123, 157 (2003)
    J. K. G. Dhont, M. Lettinga, Z. Dogic, T. A. J. Lenstra, H. Wang, S. Rathgeber, P. Carletto, L. Willner, H. Frielinghaus, P. Linder
  • Direct visual observation of thermal capillary waves, Science 304, 847-850 (2004)
    D. G. A. L. Aarts, M. Schmidt, and H. N. W. Lekkerkerker
  • Harmonic lattice behavior of two-dimensional colloidal crystals, Phys. Rev. Letters 92, 215504 (2004)
    P. Keim, G. Maret, U. Herz, and H. H. von Grünberg
  • Single-file diffusion of colloids in onedimensional channels, Phys. Rev. Letters 93, 026001 (2004)
    C. Lutz, M. Kollmann, and C. Bechinger
  • Colloidal hard-sphere crystal growth frustrated by large spherical impurities, Science 309, 1231 (2005)
    V. W. A. de Villeneuve, R. P. A. Dullens, D. G. A. L. Aarts, E. Groeneveld, J. H. Scherff, W. K. Kegel, and H. N. W. Lekkerkerker
  • Ionic colloidal crystals of oppositely charged particles, Nature 437, 235 (2005)
    M.E. Leunissen, C.G. Christova, A.-P. Hynninen, C.P. Royall, A.I. Campbell, A. Imhof, M. Dijkstra, R. van Roij, and A. van Blaaderen
  • Critical behavior of colloid-polymer mixtures in random porous media, Phys. Rev. Letters 97, 230603 (2006)
    R. L. C. Vink, K. Binder, and H. Löwen
  • Isotropic-Nematic Interface and Wetting in Suspensions of Colloidal Platelets, Phys. Rev. Letters 97, 087801 (2006)
    D. van der Beek, H. Reich, P. van der Schoot, M. Dijkstra, T. Schilling, R. Vink, M. Schmidt, R. van Roij, and H. Lekkerkerker
  • Layer Reduction in Driven 2D-Colloidal Systems through Microchannels, Phys. Rev. Letters 97, 208302 (2006)
    M. Köppl, P. Henseler, A. Erbe, P. Nielaba, and P. Leiderer
  • Suppression of thermally excited capillary waves by shear flow, Rhys. Rev. Letters 97, 038301 (2006)
    D. Derks, D. G. A. L. Aarts, D. Bonn, H. N. W. Lekkerkerker, and A. Imhof
  • Depletion-induced percolation in networks of nanorods, Phys. Rev. Letters 98, 108303 (2007)
    T. Schilling, S. Jungblut, and M. A. Miller
  • Electrophoresis of colloidal dispersions in the low-salt regime, Phys. Rev. Letters 98, 176105 (2007)
    V. Lobaskin, B. D¨unweg, M. Medebach, T. Palberg, and C. Holm
  • Ordering of two-dimensional crystals confined in stripes of finite width, Phys. Rev. E 75, 011405 (2007)
    A. Ricci, P. Nielaba, S. Sengupta, and K. Binder
  • Self-assembly route for photonic crystals with a bandgap in the visible region, Nature Materials 6, 202 (2007)
    A.-P. Hynninen, J. H. J. Thijssen, E. C. M. Vermolen, M. Dijkstra, and A. van Blaaderen
  • Asymmetric caging in soft colloidal mixtures, Nature Materials 7, 780 (2008)
    C. Mayer, E. Zaccarelli, E. Stiakakis, C. N. Likos, F. Sciortino, A. Munam, M. Gauthier, N. Hadjichristidis, H. Iatrou, P. Tartaglia, H. Löwen, and D. Vlassopoulos
  • Attractive colloidal rods in shear flow, Phys. Rev. Letters 101, 168302 (2008)
    M. Ripoll, P. Holmqvist, R. G. Winkler, G. Gompper, J. K. G. Dhont, and M. P. Lettinga
  • First-principles constitutive equation for suspension rheology, Phys. Rev. Letters 101, 138301 (2008)
    J. M. Brader, M. E. Cates, and M. Fuchs
  • From equilibrium to steady state: the transient dynamics of colloidal liquids under shear, J. Phys.: Condensed Matter 20, 404210 (2008)
    J. Zausch, J. Horbach, M. Laurati, S. U. Egelhaaf, J. M. Brader, T. Voigtmann and M. Fuchs
  • Direct observation of hydrodynamic instabilities in a driven nonuniform colloidal dispersion, Soft Matter 5, 1340 (2009)
    A. Wysocki, C. P. Royall, R. Winkler, G. Gompper, H. Tanaka, A. van Blaaderen, and H. Löwen
  • Experimental realization of biaxial liquid crystal phases in colloidal dispersions of boardlike particles, Phys. Rev. Letters 103, 258301 (2009)
    E. van den Pol, A. V. Petukhov, D. M. E. Thies-Weesie, D. V. Byelov, and G. J. Vroege
  • Glass rheology: From mode-coupling theory to a dynamical yield criterion, Proc. Natl. Acad. Sci. USA 106, 15186 (2009)
    J. M. Brader, T. Voigtmann, M. Fuchs, R. G. Larson, and M. E. Cates
  • Ultra-fast quenching of binary colloidal suspensions in an external magnetic field, Phys. Rev. Letters 102, 238301 (2009)
    L. Assoud, F. Ebert, P. Keim, R. Messina, G. Maret, and H. Löwen
  • Glass transition in confined geometry, Phys. Rev. Letters 105, 125701 (2010)
    S. Lang, V. Botan, M. Oettel, D. Hajnal, T. Franosch, and R. Schilling
  • Rounding of Phase Transitions in Cylindrical Pores, Phys. Rev. Letters 105, 045701 (2010)
    D. Wilms, A. Winkler, P. Virnau, and K. Binder
  • Dynamics of dilute colloidal suspensions in modulated potentials, Soft Matter 7, 2064 (2011)
    C. Dalle-Ferrier, M. Kr¨uger, R. D. L. Hanes, S. Walta, M. C. Jenkins, and S. U. Egelhaaf
  • Lane formation in driven mixtures of oppositely charged colloids, Soft Matter 7, 2352 (2011)
    T. Vissers, A. Wysocki, M. Rex, H. L¨owen, C. P. Royall, A. Imhof, and A. van Blaaderen
  • Nonequilibrium forces between dragged ultrasoft colloids, Phys. Rev. Letters 107, 158301 (2011)
    S. P. Singh, R. G. Winkler, and G. Gompper
  • Schematic models for active nonlinear microrheology, Soft Matter 7, 1390 (2011)
    M. V. Gnann, I. Gazuz, A. M. Puertas, M. Fuchs, and T. Voigtmann
  • Shock Waves in Capillary Collapse of Colloids: A Model System for Two-Dimensional Screened Newtonian Gravity, Phys. Rev. Letters 107, 128302 (2011)
    J. Bleibel, S. Dietrich, A. Dominguez, and M. Oettel
  • Ultrasoft colloid-polymer mixtures: Structure and phase diagram, Phys. Rev. Letters 106, 228301 (2011)
    B. Lonetti, M. Camargo, J. Stellbrink, C. N. Likos, E. Zaccarelli, L. Willner, P. Lindner and D. Richter
  • Active non-linear rheology in a glass-forming Yukawa fluid, Phys. Rev. Letters 108, 028303 (2012)
    D. Winter, J. Horbach, P. Virnau, K. Binder
  • Candle soot as a template for a transparent robust superamphiphobic coating, Science 335, 67 (2012)
    X. Deng, L. Mammen, H.-J. Butt, and D. Vollmer
    (Siehe online unter https://doi.org/10.1126/science.1207115)
  • Colloidal crystallization in the quasi-two-dimensional induced by electrolyte gradients, J. Chem. Phys. 136, 164505 (2012)
    A. Reinmüller, E. C. Oguz, R. Messina, H. Löwen, H. J. Schöpe, and T. Palberg
    (Siehe online unter https://doi.org/10.1063/1.4705393)
  • Electro-kinetics of charged-sphere suspensions explored by integral low-angle superheterodyne laser Doppler velocimetry, J. Phys.: Condensed Matter 24, 464109 (2012)
    T. Palberg, T. K¨oller, B. Sieber, H. Schweinfurth, H. Reiber and G. Nägele
    (Siehe online unter https://doi.org/10.1088/0953-8984/24/46/464109)
  • Meso-scale turbulence in living fluids, Proc. Natl. Acad. Sci. USA 109, 14308 (2012)
    H. H. Wensink, J. Dunkel, S. Heidenreich, K. Drescher, R. E. Goldstein, H. L¨owen, and J. M. Yeomans
  • Non-monotonic crossover from single-file to regular diffusion in microchannels, Scientific Reports 2, 1015 (2012)
    U. Siems, C. Kreuter, A. Erbe, N. Schwierz, S. Sengupta, P. Leiderer, and P. Nielaba
    (Siehe online unter https://doi.org/10.1038/srep01015)
  • Separation of chiral particles in micro- or nanofluidic channels, Phys. Rev. Letters 108, 214504 (2012)
    S. Meinhardt, J. Smiatek, R. Eichhorn, and F. Schmid
    (Siehe online unter https://doi.org/10.1103/PhysRevLett.108.214504)
  • Structure and dynamics of loosely cross-linked ionic microgel dispersions in the fluid regime, Phys. Rev. Letters 109, 048302 (2012)
    P. Holmqvist, P.S. Mohanty, G. Nägele, P. Schurtenberger and M. Heinen
    (Siehe online unter https://doi.org/10.1103/PhysRevLett.109.048302)
  • Yielding of hard-sphere glasses during start-up shear, Phys. Rev. Letters 108, 098303 (2012)
    N. Koumakis, M. Laurati, S. U. Egelhaaf, J. F. Brady, and G. Petekidis
    (Siehe online unter https://doi.org/10.1103/PhysRevLett.108.098303)
  • Self-organized cooperative swimming at low Reynolds numbers, Langmuir 29, 1738 (2013)
    A. Reinmüller, H. J. Schöpe, and T. Palberg
    (Siehe online unter https://doi.org/10.1021/la3046466)
 
 

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