Time-resolved small-angle neutron scattering studies of the thermally-induced exchange of copolymer chains between spherical diblock copolymer nanoparticles prepared via polymerization-induced self-assembly

被引:0
|
作者
Cornel, Erik J. [1 ]
Smith, Gregory N. [1 ,2 ]
Rogers, Sarah E. [3 ]
Hallett, James E. [4 ]
Growney, David J. [5 ]
Smith, Timothy [5 ]
O'Hora, Paul S. [5 ]
van Meurs, Sandra [1 ]
Mykhaylyk, Oleksandr O. [1 ]
Armes, Steven P. [1 ]
机构
[1] Univ Sheffield, Dept Chem, Brook Hill,Dainton Bldg, Sheffield S3 7HF, S Yorkshire, England
[2] Univ Copenhagen, Niels Bohr Inst, Univ Pk 5, DK-2100 Copenhagen O, Denmark
[3] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England
[4] Univ Bristol, HH Wills Phys Lab, Tyndall Ave, Bristol BS8 1TL, Avon, England
[5] Lubrizol Ltd, Nether Lane, Hazelwood DE56 4AN, Derby, England
基金
英国工程与自然科学研究理事会;
关键词
RAFT DISPERSION POLYMERIZATION; LIVING RADICAL POLYMERIZATION; MOLECULAR-EXCHANGE; MICELLES; BLOCK; KINETICS; METHACRYLATE); MICELLIZATION; HOMOPOLYMERS; POLYSTYRENE;
D O I
10.1039/c9sm02425e
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
Sterically-stabilized diblock copolymer nanoparticles (a.k.a. micelles) are prepared directly in non-polar media via polymerization-induced self-assembly (PISA). More specifically, a poly(lauryl methacrylate) chain transfer agent is chain-extended via reversible addition-fragmentation chain transfer (RAFT) dispersion polymerization of methyl methacrylate (MMA) to form sterically-stabilized spheres at 20% w/w solids in n-dodecane at 90 degrees C. Both fully hydrogenous (PLMA(39)-PMMA(55) and PLMA(39)-PMMA(94)) and core-deuterated (PLMA(39)-d(8)PMMA(57) and PLMA(39)-d(8)PMMA(96)) spherical nanoparticles with mean core diameters of approximately 20 nm were prepared using this protocol. After diluting each dispersion in turn to 1.0% w/w with n-dodecane, small-angle X-ray scattering studies confirmed essentially no change in spherical nanoparticle diameter after thermal annealing at 150 degrees C. Time-resolved small angle neutron scattering was used to examine whether copolymer chain exchange occurs between such nanoparticles at elevated temperatures. Copolymer chain exchange for a binary mixture of PLMA(39)-PMMA(55) and PLMA(39)-d(8)PMMA(57) nanoparticles produced hybrid (mixed) cores containing both PMMA(55) and d(8)PMMA(57) blocks within 3 min at 150 degrees C. In contrast, a binary mixture of PLMA(39)-PMMA(94) and PLMA(39)-d(8)PMMA(96) nanoparticles required 8 min at this temperature before no further reduction in neutron scattering intensity could be observed. These observations suggest that the rate of copolymer chain exchange depends on the degree of polymerization of the core-forming block. Relatively slow copolymer chain exchange was also observed at 80 degrees C, which is below the T-g of the core-forming PMMA block as determined by DSC studies. These observations confirm rapid exchange of individual copolymer chains between sterically-stabilized nanoparticles at elevated temperature. The implications of these findings are briefly discussed in the context of PISA, which is a powerful technique for the synthesis of sterically-stabilized nanoparticles.
引用
收藏
页码:3657 / 3668
页数:12
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