We investigate the kinetics of self-assembly by means of Brownian dynamics simulation based on a idealized fluid model ( two 'sticky' spots on a sphere) in which the particles are known to form into dynamic polymer chains at equilibrium. To illustrate the slow evolution of the properties of these self-assembling fluids to their equilibrium assembled state values at long times, we perform Brownian dynamics simulations over a range of quench depths from the high temperature unassembled state to the low temperature assembled state. We investigate the time dependence of the average chain length ( cluster mass), the order parameter for the assembly transition ( fraction of particles in the chain state) and the potential energy of the fluid. The rate constant governing the self-assembly ordering process depends both on kinetic-related factors ( the particle hydrodynamic radius and the fluid viscosity) and on thermodynamic energetic variables governing the self-assembly transition (i.e., the entropy and enthalpy of assembly). We provide evidence that an essentially parameter-free description of the polymerization kinetics can be formulated for this model.

Growth of equilibrium polymers under non-equilibrium conditions / Sciortino, Francesco; DE MICHELE, Cristiano; Jack F., Douglas. - In: JOURNAL OF PHYSICS. CONDENSED MATTER. - ISSN 0953-8984. - STAMPA. - 20:15(2008), pp. 155101-155101-10. [10.1088/0953-8984/20/15/155101]

Growth of equilibrium polymers under non-equilibrium conditions

SCIORTINO, Francesco;DE MICHELE, CRISTIANO;
2008

Abstract

We investigate the kinetics of self-assembly by means of Brownian dynamics simulation based on a idealized fluid model ( two 'sticky' spots on a sphere) in which the particles are known to form into dynamic polymer chains at equilibrium. To illustrate the slow evolution of the properties of these self-assembling fluids to their equilibrium assembled state values at long times, we perform Brownian dynamics simulations over a range of quench depths from the high temperature unassembled state to the low temperature assembled state. We investigate the time dependence of the average chain length ( cluster mass), the order parameter for the assembly transition ( fraction of particles in the chain state) and the potential energy of the fluid. The rate constant governing the self-assembly ordering process depends both on kinetic-related factors ( the particle hydrodynamic radius and the fluid viscosity) and on thermodynamic energetic variables governing the self-assembly transition (i.e., the entropy and enthalpy of assembly). We provide evidence that an essentially parameter-free description of the polymerization kinetics can be formulated for this model.
2008
bi-functional patchy model; equilibrium polymerization; event-driven brownian dynamics
01 Pubblicazione su rivista::01a Articolo in rivista
Growth of equilibrium polymers under non-equilibrium conditions / Sciortino, Francesco; DE MICHELE, Cristiano; Jack F., Douglas. - In: JOURNAL OF PHYSICS. CONDENSED MATTER. - ISSN 0953-8984. - STAMPA. - 20:15(2008), pp. 155101-155101-10. [10.1088/0953-8984/20/15/155101]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/360051
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