Entanglement dynamics at flat surfaces: Investigations using multi-chain molecular dynamics and a single-chain slip-spring model

被引:10
作者
Kirk, Jack [1 ]
Wang, Zuowei [1 ]
Ilg, Patrick [1 ]
机构
[1] Univ Reading, Sch Math Phys & Computat Sci, Reading RG6 6AX, Berks, England
基金
英国工程与自然科学研究理事会;
关键词
POLYMER MELTS; CONSTRAINT RELEASE; LOCAL DYNAMICS; TUBE DIAMETER; THIN-FILM; WALL SLIP; NANOCOMPOSITES; SIMULATIONS; CONFORMATIONS; INTERFACE;
D O I
10.1063/1.5045301
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The dynamics of an entangled polymer melt confined in a channel by parallel plates is investigated by Molecular Dynamics (MD) simulations of a detailed, multi-chain model. A primitive path analysis predicts that the density of entanglements remains approximately constant throughout the gap and drops to lower values only in the immediate vicinity of the surface. Based on these observations, we propose a coarse grained, single-chain slip-spring model with a uniform density of slip-spring anchors and slip-links. The slip-spring model is compared to the Kremer-Grest MD bead-spring model via equilibrium correlation functions of chain orientations. Reasonably good agreement between the single-chain model and the detailed multi-chain model is obtained for chain relaxation dynamics, both away from the surface and for chains whose center of mass positions are at a distance from the surface that is less than the bulk chain radius of gyration, without introducing any additional model parameters. Our results suggest that there is no considerable drop in topological interactions for chains in the vicinity of a single flat surface. We infer from the slip-spring model that the experimental plateau modulus of a confined polymer melt may be different to a corresponding unconfined system even if there is no drop in topological interactions for the confined case. Published under license by AIP Publishing.
引用
收藏
页数:12
相关论文
共 65 条
[1]   Anisotropy of Shear Relaxation in Confined Thin Films of Unentangled Polymer Melts [J].
Abberton, Brendan C. ;
Liu, Wing Kam ;
Keten, Sinan .
MACROMOLECULES, 2015, 48 (20) :7631-7639
[2]   Theories and simulations of polymer-based nanocomposites: From chain statistics to reinforcement [J].
Allegra, Giuseppe ;
Raos, Guido ;
Vacatello, Michele .
PROGRESS IN POLYMER SCIENCE, 2008, 33 (07) :683-731
[3]  
[Anonymous], THESIS
[4]   Reduced Interfacial Entanglement Density Affects the Boundary Conditions of Polymer Flow [J].
Baeumchen, O. ;
Fetzer, R. ;
Jacobs, K. .
PHYSICAL REVIEW LETTERS, 2009, 103 (24)
[5]   Computer simulations of supercooled polymer melts in the bulk and in-confined geometry [J].
Baschnagel, J ;
Varnik, F .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2005, 17 (32) :R851-R953
[6]   Finding the Tube with Isoconfigurational Averaging [J].
Bisbee, Windsor ;
Qin, Jian ;
Milner, Scott T. .
MACROMOLECULES, 2011, 44 (22) :8972-8980
[7]   Viscoelastic properties of ultrathin polystyrene films [J].
Bodiguel, Hugues ;
Fretigny, Christian .
MACROMOLECULES, 2007, 40 (20) :7291-7298
[8]   Entanglements at polymer surfaces and interfaces [J].
Brown, HR ;
Russell, TP .
MACROMOLECULES, 1996, 29 (02) :798-800
[9]   Microscopic Picture of Constraint Release Effects in Entangled Star Polymer Melts [J].
Cao, Jing ;
Wang, Zuowei .
MACROMOLECULES, 2016, 49 (15) :5677-5691
[10]   Simulating Startup Shear of Entangled Polymer Melts [J].
Cao, Jing ;
Likhtman, Alexei E. .
ACS MACRO LETTERS, 2015, 4 (12) :1376-1381