Publications
- See list of group theses.
- Papers:
2012, 2011, 2010, 2009, 2007, 2006, 2005, 2004, 2003, 2001, 2000, 1998, 1997, 1996, 1995, 1994, 1993, 1992, 1990, 1989, 1988, 1986, 1985, 1984.
2012- Structural modulation of self-oscillating gels: changing the proximity of the catalyst to the polymer backbone to tailor chemomechanical oscillation
Ye Zhang, Ning Li, Jorge Delgado, Ning Zhou, Ryo Yoshida, Seth Fraden, Irving R. Epstein and Bing Xu
Soft Matter, 2012; DOI: 10.1039/c2sm25797a.
- Post-Self-Assembly Cross-Linking of Molecular Nanofibers for Oscillatory Hydrogels
Ye Zhang, Ning Li, Jorge Delgado, Yuan Gao, Yi Kuang, Seth Fraden, Irving R. Epstein, and Bing Xu
Langmuir, 2012; DOI: 10.1021/la203923d.
- Interactions between Colloids Induced by a Soft Cross-Linked Polymer Substrate
Lorenzo Di Michele, Taiki Yanagishima, Anthony R. Brewer, Jurij Kotar, Erika Eiser and Seth Fraden
Physical Reveiw Letters 136101 (2011).
- Coupled oscillations in a 1D emulsion of Belousov–Zhabotinsky droplets
Jorge Delgado, Ning Li, Marcin Leda, Hector O. Gonzalez-Ochoa, Seth Fraden and Irving R. Epstein
Soft Matter, 2011 ; DOI: 10.1039/c0sm01240h.
- Functional patterning of PDMS microfluidic devices using integrated chemo-masks
Mark B. Romanowsky, Michael Heymann, Adam R. Abate, Amber T. Krummel, Seth Fraden and David A. Weitz
Lab Chip, 2010, 10, 1521 - 1524, DOI: 10.1039/c004050a.
- Synchronization of Chemical Micro-oscillators
Masahiro Toiya, Hector O. Gonzlez-Ochoa, Vladimir K. Vanag, Seth Fraden and Irving R. Epstein
J. Phys. Chem. Lett., 2010, 1 (8), pp 1241–1246; DOI: 10.1021/jz100238u. Check the supporting information here.
- Mapping and manipulating temperature-concentration phase diagrams using microfluidics
Šeila Selimovic, Frédéric Gobeaux and Seth Fraden
Lab Chip, 2010, DOI : 10.1039/b925661j (link to supplementary data here).
- Phase Behavior and Rheology of Attractive Rod Like Particles
F. Huang, R. Rotstein, Seth Fraden, Karen E Kasza and Nolan T. Flynn
Soft Matter, 2009, 5, 2766-2771.
- Measuring the Nucleation Rate of Lysozyme using Microfluidics.
S. Selimovic, Y. Jia, and S. Fraden
Crystal Growth & Design, DOI: 10.1021/cg800990k (2009).
- Pair Potential of Charged Colloidal Stars.
F. Huang, K. Addas, A. Ward, N.T. Flynn, E. Velasco, M.F. Hagan, Z. Dogic, and S. Fraden,
Physical Review Letters 102, 108302 (2009).
- Simple, robust storage of drops and fluids in a microfluidic device
H. Boukellal, S. Selimovic, Y. Jia, G. Cristobal and S. Fraden,
Lab on a Chip 9, 331–338 (2009)
Movies! Lab on a Chip Supplementary Information.
- Using microfluidics to decouple nucleation and growth of protein crystals
J.U. Shim, G. Cristobal G, D.R. Link, T. Thorsen, S. Fraden,
Crystal Growth & Design 7, 2192-2194 (2007).
- Smectic ordering in athermal systems of rodlike triblock copolymers,
S. Varga and S. Fraden
J. Chem. Phys. 127, 154902 (2007).
- Crystallization conditions of membrane protein CLC-ec1: An example outside the crystallization slot,
J. Blouwolff and S. Fraden
J. Crystal Growth 303, 546–553 (2007).
- Influence of charge and flexibility on smectic phase formation in filamentous virus suspensions,
K. Purdy and S. Fraden
Physical Review E 76, 011705 (2007).
- Control and Measurement of the Phase Behavior of Aqueous Solutions Using Microfluidics
J.U. Shim, G. Cristobal, D.R. Link, T. Thorsen, Y. Jia, K. Piattelli, S. Fraden,
J. Am. Chem. Soc. 129, 8825 - 8835 (2007); DOI: 10.1021/ja071820f
Supporting Information. Movies.
Selected by Science as an "Editors' Choice" and by Lab on a Chip as a "Research Highlight".
- The coordination number of granular cylinders
J. Blouwolff and S. Fraden
Europhys. Lett., 76, 1095–1101 (2006).
- Soft Matter, vol. 2: Complex Colloidal Suspensions, Gompper, G / Schick, M (eds.)
Chap. 1: “Phase Behavior of Rod-Like Viruses and Virus–Sphere Mixtures”
Z. Dogic and S. Fraden, 1st ed., Wiley-VCH, Weinheim, 2006.
- Ordered phases of filamentous viruses.
Z. Dogic and S. Fraden
Current Opinion in Colloid & Interface Science 11, 47 (2006).
- Light scattering and phase behavior of Lysozyme-PEG mixtures.
J. Bloustine, T. Virmani, G. M. Thurston, and S. Fraden
Phys. Rev. Lett. 96, 087803 (2006).
- Nematic-nematic phase separation in binary mixtures of thick and thin hard rods: Results from Onsager-like theories.
S. Varga, K. Purdy, A. Galindo, S. Fraden, and G. Jackson
Phys Rev E 72, 051704 (2005).
- Nematic Phase transitions in Mixtures of Thin and Thick Colloidal Rods.
K. R. Purdy, S. Varga, A. Galindo, G. Jackson, and S. Fraden
Phys. Rev. Lett. 94, 057801 (2005).
- Isotropic-cholesteric phase transition of filamentous virus suspensions as a function of rod length and charge.
K. R. Purdy and S. Fraden
Phys. Rev. E 70, 061703 (2004).
- Isotropic-Nematic phase transition in suspensions of filamentous virus and the neutral polymer Dextran.
Z. Dogic, K. Purdy, E. Grelet, M. Adams, and S. Fraden
Phys. Rev. E 69, 051702 (2004).
- Our lab mentioned in Science News, Vol. 164, No. 1, July 5, 2003, p. 7.
Microbial Materials: Scientists co-opt viruses, bacteria, and fungi to build new structures.
- Measurements of Protein-Protein Interactions by Size Exclusion Chromatography
J. Bloustine, V. Berejnov and S. Fraden
Biophysical Journal 85: 2619-2623 (2003).
- What is the origin of chirality in the cholesteric phase of virus suspensions?
E. Grelet and S. Fraden
Phys. Rev. Lett. 90, 198302 (2003).
- Measuring the nematic order of colloidal fd virus by x-ray diffraction
K. Purdy, Z. Dogic, S. Fraden. A. Ruehm, L. Lurio, and S. G. J. Mochrie
Phys. Rev. E. 67 031708 (2003).
- Development of model colloidal liquid crystals and the kinetics of the isotropic-smectic transition
Z. Dogic and S. Fraden
Philosophical Transactions of the Royal Society of London A 359, 997 - 1015 (2001).
- Self-Assembly in Vivo, with R. Kamien
Biophys. J. 78, 2189 (2000).
- Enhanced stability of layered phases in parallel hard-spherocylinders due to the addition of hard spheres
Z. Dogic, D. Frenkel , S. Fraden
Physical Review E 62, 3925 - 3933 (2000).
- Concentration Dependent Sedimentation of Colloidal Rods
Z. Dogic, A.P. Philipse, S. Fraden, and J.K.G. Dhont
J. Chem. Phys. 113, 8368 - 8380 (2000).
- Cholesteric Phase in Virus Suspensions
Z. Dogic and S. Fraden
Langmuir 16, 7820 - 7824 (2000).
- Structure of Electrorheological Fluids
U. Dassanayake, S. Fraden, and A. van Blaaderen
Journal of Chemical Physics 112, 3851- 3858 (2000).
- Entropically driven microphase transitions in mixtures of colloidal rods and spheres.
Marie Adams, Zvonimir Dogic, Sarah L. Keller, and Seth Fraden
Nature 393: 349-352 (May 28, 1998).
- Another Face of Entropy
Peter Weiss
Science News, Aug. 15, 1998. News article on depletion, entropy, protein crystallization.
- Solving the Poisson-Boltzmann equation to Obtain Interaction Energies Between Confined, Like-Charged Cylinders
M. Ospeck and S. Fraden
J. Chem. Phys. 109, 9166 - 9171 (1998).
- Phase behavior of mixtures of rods (Tobacco Mosaic Virus) and spheres (Polyethylene Oxide, Bovine Serum Albumin)
Marie Adams and Seth Fraden
Biophysical Journal 74, 669-677 (1998).
- The Smectic Phase in a Colloidal Suspension of Semi-Flexible Virus Particles
Zvonimir Dogic and Seth Fraden
Phys. Rev. Lett. 78, 2417-2420 (1997).
Download an adobe pdf copy of preprint
- Non-Monotonic Temperature Dependence of the Flexibility of Bacteriophage fd
Jianxin Tang and Seth Fraden
Biopolymers 39, 13 - 22 (1996).
- Phase transitions in colloidal suspensions of virus particles.
S. Fraden, M. Baus, L. F. Rull, and J. P. Ryckaert, editors
In "Observation, Prediction, and Simulation of Phase Transitions in Complex Fluids", NATO-ASI Series C, vol. 460, pages 113--164. Kluwer Academic Publishers, 1995.
- Isotropic-Cholesteric phase transition in colloidal suspensions of bacteriophage fd
Jianxin Tang and Seth Fraden
Liquid Crystals 19, 459-467 (1995).
- Observation and Simulation of Electro-Hydrodynamic Instabilities in Aqueous colloidal Suspensions
Hu Y, Glass JL, Griffith AE, et al.
J Chem Phys, 100:4674 (1994).
- Video microscopy study of the potential energy of a colloidal particle confined between two plates.
G. M. Kepler and S. Fraden
Langmuir 10, 2501 - 2506 (1994).
- Attractive potential between confined colloids at low ionic strength.
G. M. Kepler and S. Fraden
Phys. Rev. Letts. 73, 356 - 359 (1994).
- Influence of Reflecting Boundaries and Finite Interfacial Thickness on the Coherent Backscattering Cone
Ospeck M and Fraden S
Phys Rev E 49:4578 (1994).
- Angular Correlations and the Isotropic-Nematic Phase Transition in Suspensions of Tobacco Mosaic Virus
Fraden S, Maret G, and Caspar DLD
Phys Rev E 48:2816 (1993).
- Magnetic Field Induced Isotropic-Nematic Phase Transition in a Colloidal Suspension
Tang J and Fraden S
Phys Rev Lett, 71:3509 (1993).
- Liquidlike Order of Charged Rodlike Particle Solutions
Maier EE, Krause R, Deggelmann M, et al.
Macromolecules 25:1125-33 (1992).
- Multiple Light Scattering from Concentrated, Interacting Suspensions
Fraden S, Maret G.
Phys Rev Lett 65:512 (1990).
- Isotropic-Nematic Phase Transition and Angular Correlations in Isotropic Suspensions of Tobacco Mosaic Virus
Fraden S, Maret G, Caspar DLD
Phys Rev Lett 63:2068 (1989).
- Electric-field-induced association of colloidal particles.
S. Fraden, A. J. Hurd, and R. B. Meyer
Phys. Rev. Letts. 63, 2373 - 2376 (1989).
- Field-Induced Nonequilibrium Periodic Structures in Nematic Liquid Crystals: Nonlinear Study of the Twist Frederiks Transition
Srajer G, Fraden S, Meyer RB.
Phys Rev A 39:4828 (1989).
- Comment on `Measurement of the Viscoelastic Coefficients of main-Chain Nematic Polymers by an NMR Technique'
Srajer G, Fraden S, Meyer RB.
Phys Rev Lett 61:899 (1988).
- Comment on `Nonequilibrium Periodic Structures Induced by Rotating and Static Fields in a Lyotropic Nematic Liquid Crystal'
Fraden S, Meyer RB.
Phys Rev Lett 57:3122 (1986).
- Magnetic Field Induced Alignment and Instabilities in Ordered Colloids of Tobacco Mosaic Virus
Fraden S, Hurd AJ, Meyer RB, et al.
J de Physique C3:85-113 (1985).
- Field -Induced Transient Periodic Structures in Nematic Liquid Crystals: the Splay Frederiks Transition
Hurd AJ, Fraden S, Lonberg F, et al.
J de Physique 46:905 (1985).
- Measurements of the Anisotropic Viscous and Elastic Properties of Lyotropic Polymer Nematics
Meyer RB, Lonberg F, Taratuta V, et al.
Faraday Discuss Chem Soc 79:125 (1985).
- Field-Induced Transient Periodic Structures in Nematic Liquid Crystals: the Twist Frederiks Transition
Lonberg F, Fraden S, Hurd AJ, et al.
Phys Rev Lett 52:1903 (1984).
Recent Theses
- Microfluidics for Protein Crystallization and Mapping Phase Diagrams of Aqueous Solutions
Seila Selimovic (February 2010).
- Interactions and Collective Behavior of Attractive Colloidal Rods and Microspheres Grafted with Filamentous Bacteriophage
Phil Fei Huang (May 2009).
- Novel Approach to Protein Crystallization; Control of the Phase Behavior of Aqueous Solutions using Microfluidics
Jung uk Shim (February 2007).
- Experimental Investigations into Interactions and Collective Behavior in Protein/Polymer Mixtures and Granular Rods
Joshua David Bloustine (May 2006).
- Liquid Crystal Phase Transitions in Mondisperse and Bidisperse Suspensions of Rodlike Colloidal Virus
Kirstin R. Purdy (Aug. 2004).
- Liquid Crystalline Phase Transitions in Virus and Virus/Polymer Suspensions
Zvonimir Dogic (Feb 2000).
