New Insight into Cluster Aggregation Mechanism during Polymerization-Induced Self-Assembly by Molecular Dynamics Simulation

被引:27
作者
Brunel, Fabrice [1 ]
de la Haye, Jennifer Lesage [2 ]
Lansalot, Muriel [1 ]
D'Agosto, Franck [1 ]
机构
[1] Univ Claude Bernard Lyon 1, Univ Lyon, CPE Lyon, CNRS,C2P2, 43 Bvd 11 Novembre 1918, F-69616 Villeurbanne, France
[2] Univ Claude Bernard Lyon 1, Univ Lyon, CNRS, CNES,ArianeGrp,LHCEP, Bat Raulin,2 Rue Victor Grignard, F-69622 Villeurbanne, France
关键词
ONE-POT SYNTHESIS; AQUEOUS EMULSION POLYMERIZATION; AMPHIPHILIC BLOCK-COPOLYMERS; COARSE-GRAINED MODEL; RAFT POLYMERIZATION; NANO-OBJECTS; PROTEIN; METHACRYLATE); WATER; NANOPARTICLES;
D O I
10.1021/acs.jpcb.9b03622
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
Investigations of polymerization-induced self assembly in emulsion were conducted using molecular dynamics simulations. Using umbrella sampling and the weighted histogram analysis method algorithm, we calculated the interaction free energy between different self-assembled copolymer aggregates. In the presence of poly(ethylene glycol) (PEG) side chains at 80 degrees C, an attractive interaction between the copolymer micelles is observed. This attractive well is followed, in some case, by a repulsive barrier depending on the position of the PEG side chains. The strength of this repulsive barrier controls the aggregation kinetics: a strong repulsive barrier leads to slower aggregation rate and thus larger and denser clusters (i.e., reaction-limited cluster aggregation). These clusters then coalesce into large vesicles due to the presence of interstitial water molecules in the cluster. Inversely, a weak repulsive barrier causes rapid aggregation, which gives loose and ramified clusters (i.e., diffusion-limited cluster aggregation) that coalesce after swelling with a hydrophobic monomer, leading to tubular nanostructures and small vesicles. This new mechanism approach can explain the change of morphology from spheres to fibers and vesicles depending on the polymer architecture in the case of polymerization-induced self-assembly (PISA) in emulsion.
引用
收藏
页码:6609 / 6617
页数:9
相关论文
共 81 条
  • [41] UNIVERSALITY IN COLLOID AGGREGATION
    LIN, MY
    LINDSAY, HM
    WEITZ, DA
    BALL, RC
    KLEIN, R
    MEAKIN, P
    [J]. NATURE, 1989, 339 (6223) : 360 - 362
  • [42] Can percolation theory explain the gelation behavior of diblock copolymer worms?
    Lovett, Joseph R.
    Derry, Matthew J.
    Yang, Pengcheng
    Hatton, Fiona L.
    Warren, Nicholas J.
    Fowler, Patrick W.
    Armes, Steven P.
    [J]. CHEMICAL SCIENCE, 2018, 9 (35) : 7138 - 7144
  • [43] ABC Triblock Copolymer Worms: Synthesis, Characterization, and Evaluation as Pickering Emulsifiers for Millimeter-Sized Droplets
    Mable, C. J.
    Thompson, K. L.
    Derry, M. J.
    Mykhaylyk, O. O.
    Binks, B. P.
    Armes, S. P.
    [J]. MACROMOLECULES, 2016, 49 (20) : 7897 - 7907
  • [44] HYDROXYALKYL METHACRYLATES - KINETIC INVESTIGATIONS OF RADICAL POLYMERIZATIONS OF PURE 2-HYDROXYETHYL METHACRYLATE AND 2, 3-DIHYDROXYPROPYL METHACRYLATE AND THE RADICAL COPOLYMERIZATION OF THEIR MIXTURES
    MACRET, M
    HILD, G
    [J]. POLYMER, 1982, 23 (01) : 81 - 90
  • [45] Self-assembly of block copolymers
    Mai, Yiyong
    Eisenberg, Adi
    [J]. CHEMICAL SOCIETY REVIEWS, 2012, 41 (18) : 5969 - 5985
  • [46] Mark JE, 2009, The Polymer Data Handbook, V2nd
  • [47] The MARTINI force field: Coarse grained model for biomolecular simulations
    Marrink, Siewert J.
    Risselada, H. Jelger
    Yefimov, Serge
    Tieleman, D. Peter
    de Vries, Alex H.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2007, 111 (27) : 7812 - 7824
  • [48] Atom transfer radical polymerization
    Matyjaszewski, K
    Xia, JH
    [J]. CHEMICAL REVIEWS, 2001, 101 (09) : 2921 - 2990
  • [49] MIKOS AG, 1988, BIOMATERIALS, V9, P419
  • [50] Radical addition-fragmentation chemistry in polymer synthesis
    Moad, Graeme
    Rizzardo, Ezio
    Thang, San H.
    [J]. POLYMER, 2008, 49 (05) : 1079 - 1131