个人简介
B.Sc. (McGill, 1974)
Ph.D. (Massachussetts Institute of Technology, 1978)
Assistant & Associate Professor (Harvard University, 1980-1988)
Miller Fellow, University of California at Berkley, 1978
Camille and Henry Dreyfus Teacher-Scholar 1985
Alfred P. Sloan Research Fellow 1985
Associate Member, Department of Physics, McGill University
Member, Center for the Physics of Materials
Member, McGill Institute for Advanced Materials (MIAM)
研究领域
Chemical Biology
Chemical Physics
Materials Chemistry
We use the tools of statistical mechanics to solve equilibrium and nonequilibrium problems in condensed complex systems such as: Transport in membrane and zeolite channels, Static and dynamic properties of suspensions of highly charged colloidal particles, Correlations and conformations in polymer-coated colloids, Surface Texturing in Polymer Extrudates, Dynamics in critical fluids far from equilibrium, and Energy-Transfer. For a more complete description of our research, have a look at my web page here.
近期论文
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M. Vertenstein and D. Ronis, Microscopic Theory of Membrane Transport III: Transport in Multiple Barrier Systems, J. Chem. Phys. 85, 1628 (1986).
D. Ronis and S. Khan, Stability and Fluctuations in Sheared Colloidal Crystals, , Phys. Rev. A, 42, 4694 (1990).
J.-Y. Yuan and D. Ronis, Instability and pattern formation in colloidal suspension Taylor-Couette flow, Phys. Rev. E 48, 2280 (1993).
D. Ronis, Statistical mechanics of ionomeric colloids: thermodynamics, correlations, and scattering, Phys. Rev. A 44, 3769 (1991).
D. Ronis, Statistical mechanics of ionomeric colloids II: Ionomer Conformational Equilibria, Macromolecules 26, 2016 (1993).
D. Ronis, Statistical mechanics of ionic colloids: Interparticle correlations and conformational equilibria in suspensions of polymer coated colloids, Phys. Rev. E 49, 5438 (1994).
Y. Drossinos and D. Ronis, Critical Dynamics of Unstable States, Phys. Rev. B 42, 4694 (1990).
J.-Y. Yuan and D. Ronis, Theory of fully developed hydrodynamic turbulent flow: Applications of renormalization group methods, Phys. Rev. A 45, 5578-5595 (1992).
A. C. Pineda and D. Ronis, A Classical Model for Energy Transfer in Microspherical Droplets, Phys. Rev. E 52, 5178-5194 (1995).
B. Morin and D. Ronis, Disorder and Order in Sheared Colloidal Suspensions, Phys. Rev. E 54, 576 (1996).
J. D. Shore, D. Ronis, L. Piche, and Martin Grant, Model for melt fracture instabilities in capillary flow of polymer melts, Phys. Rev. Lett. 77, 655 (1996).