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首页> 外文期刊>Soft matter >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
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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

机译:时间分辨的小角度中子散射thermally-induced交换的研究球形diblock之间共聚物链共聚物纳米粒准备通过polymerization-induced自组装

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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.
机译:Sterically-stabilized diblock共聚物纳米粒子(又名胶束)准备直接在非极性媒体通过polymerization-induced自组装(PISA)。具体地说,一个聚(甲基丙烯酸十二烷基酯)链传输代理是chain-extended通过可逆的加成断裂链转移(筏)分散聚合的甲基丙烯酸甲酯(MMA)形成sterically-stabilized球体20% w / w固体在n-dodecane 90摄氏度。完全氢(格兰(39)甲基丙烯酸(55)格兰(39)甲基丙烯酸(94))和core-deuterated球形纳米粒子与意味着核心直径大约20 nm准备使用这个协议。与n-dodecane 1.0% w / w,小角度的x射线散射的研究基本上没有确认球形纳米颗粒直径的变化热退火在150度c,时间分辨小角中子散射被用来检查是否共聚物链交换发生这些纳米颗粒之间在升高温度。二元混合物的格兰(39)甲基丙烯酸(55)格兰(39)- d (8) PMMA(57)纳米颗粒混合动力汽车(混合)包含PMMA(55)和核心d (8) PMMA(57)街区内3分钟150度c .相比之下,一个二进制的混合物在该温度下纳米粒子需要8分钟之前没有进一步减少中子散射强度可以观察到。表明,共聚物链交换的速度取决于的聚合度core-forming块。链交换也观察到80摄氏度,低于T-g core-forming PMMA的吗块由DSC研究。观察证实个人的快速交换共聚物链之间sterically-stabilized纳米颗粒在高温。这些发现的意义在PISA的背景下讨论,这是一个强大的技术的合成sterically-stabilized纳米颗粒。

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