TY - JOUR
T1 - Density functional theory of equilibrium random copolymers
T2 - Application to surface adsorption of aggregating peptides
AU - Wang, Haiqiang
AU - Forsman, Jan
AU - Woodward, Clifford E.
PY - 2016/4/26
Y1 - 2016/4/26
N2 - We generalize a recently developed polymer density functional theory (PDFT) for polydisperse polymer fluids to the case of equilibrium random copolymers. We show that the generalization of the PDFT to these systems allows us to obtain a remarkable simplification compared to the monodispersed polymers. The theory is used to treat a model for protein aggregation into linear filaments in the presence of surfaces. Here we show that, for attractive surfaces, there is evidence of significant enhancement of protein aggregation. This behaviour is a consequence of a surface phase transition, which has been shown to occur with ideal equilibrium polymers in the presence of sufficiently attractive surfaces. For excluding monomers, this transition is suppressed, though an echo of the underlying ideal transition is present in the sudden change in the excess adsorption.
AB - We generalize a recently developed polymer density functional theory (PDFT) for polydisperse polymer fluids to the case of equilibrium random copolymers. We show that the generalization of the PDFT to these systems allows us to obtain a remarkable simplification compared to the monodispersed polymers. The theory is used to treat a model for protein aggregation into linear filaments in the presence of surfaces. Here we show that, for attractive surfaces, there is evidence of significant enhancement of protein aggregation. This behaviour is a consequence of a surface phase transition, which has been shown to occur with ideal equilibrium polymers in the presence of sufficiently attractive surfaces. For excluding monomers, this transition is suppressed, though an echo of the underlying ideal transition is present in the sudden change in the excess adsorption.
KW - adsorption
KW - copolymer
KW - DFT
UR - http://www.scopus.com/inward/record.url?scp=84969850820&partnerID=8YFLogxK
U2 - 10.1088/0953-8984/28/24/244011
DO - 10.1088/0953-8984/28/24/244011
M3 - Article
C2 - 27115518
AN - SCOPUS:84969850820
SN - 0953-8984
VL - 28
JO - Journal of Physics: Condensed Matter
JF - Journal of Physics: Condensed Matter
IS - 24
M1 - 244011
ER -