Self-assembling, semi-flexible polymers are ubiquitous in biology and technology. However, conflicting accounts of the equilibrium kinetics remain for such an important system. Here, by focusing on a dynamical description of a minimal model in an overdamped environment, I identify the correct kinetic scheme that describes the system at equilibrium in the limits of high bonding energy and dilute concentration
Polymers consisting of more than one type of monomer, known as copolymers, are vital to both living ...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Many cytoskeletal biopolymers are “active,” consuming energy in large quantities. In this Letter, we...
We investigate the kinetics of self-assembly by means of Brownian dynamics simulation based on a ide...
Living polymers are formed by reversible association of primary units (unimers). Generally the chain...
How does one obtain kinetic rate constants from the time course of a reversible and cooperative poly...
Compared to the understandings of equilibrium state , litle is known about polymers far from equilib...
We present analytical results on the so-called end-evaporation kinetics in equilibrium polymeric sys...
Supramolecular polymerization has been traditionally focused on the thermodynamic equilibrium state,...
The kinetics of the self-assembly of supramolecular polymers is dictated by how monomers, dimers, tr...
Polymer self-assembly is used to form nanomaterials with a wide range of structures. While self-asse...
The statistical mechanics and scission-recombination mechanism of self-assembling linear micelles ar...
AbstractApplying parallel multicanonical simulations, we study the aggregation transition of finite ...
Polymers consisting of more than one type of monomer, known as copolymers, are vital to both living ...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Many cytoskeletal biopolymers are “active,” consuming energy in large quantities. In this Letter, we...
We investigate the kinetics of self-assembly by means of Brownian dynamics simulation based on a ide...
Living polymers are formed by reversible association of primary units (unimers). Generally the chain...
How does one obtain kinetic rate constants from the time course of a reversible and cooperative poly...
Compared to the understandings of equilibrium state , litle is known about polymers far from equilib...
We present analytical results on the so-called end-evaporation kinetics in equilibrium polymeric sys...
Supramolecular polymerization has been traditionally focused on the thermodynamic equilibrium state,...
The kinetics of the self-assembly of supramolecular polymers is dictated by how monomers, dimers, tr...
Polymer self-assembly is used to form nanomaterials with a wide range of structures. While self-asse...
The statistical mechanics and scission-recombination mechanism of self-assembling linear micelles ar...
AbstractApplying parallel multicanonical simulations, we study the aggregation transition of finite ...
Polymers consisting of more than one type of monomer, known as copolymers, are vital to both living ...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Many cytoskeletal biopolymers are “active,” consuming energy in large quantities. In this Letter, we...