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首页> 外文期刊>Macromolecules >Effect of Molecular Weight on Lateral Microphase Separation of Mixed Homopolymer Brushes Grafted on Silica Particles
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Effect of Molecular Weight on Lateral Microphase Separation of Mixed Homopolymer Brushes Grafted on Silica Particles

机译:分子量对硅胶颗粒上接枝混合均聚物刷横向微相分离的影响

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We report a systematic study on the effect of molecular weight (MW) on microphase separation of mixed poly(tert-butyl acrylate) (PtBA)/polystyrene (PS) brushes grafted on 172 nm silica particles. The brushes were synthesized by sequential surface-initiated atom transfer radical polymerization (ATRP) of tBA at 75 °C and nitroxide-mediated radical polymerization (NMRP) of styrene at 120 °C from silica particles functionalized with an asymmetric difunctional initiator bearing an ATRP initiator and an NMRP alkoxyamine. The MWs of the two polymers in each sample were controlled to be similar to each other. A series of mixed brush samples with different average MWs, from 13.8 to 33.1 kDa, but comparable overall grafting densities were made, and their microphase separation was studied by transmission electron microscopy (TEM). The TEM samples were prepared by drop- casting the dispersions of mixed brush-grafted particles in CHCl_3 and also in water (stabilized by a surfactant) and staining the brushes with RuO_4. While CHCl_3 is a good solvent for both PtBA and PS, making the brushes spread out on the carbon films of TEM grids, water is a nonselective poor solvent for the two polymers, causing the brushes to collapse uniformly on silica core. All samples exhibited lateral microphase separation, forming nearly bicontinuous rippled nanopatterns. The average ripple wavelength D increased with increasing the MW. For samples directly cast from chloroform, D scaled with MW_(0.70) in the studied MW range. For uniformly collapsed mixed brushes cast from water, D was proportional to MW~(0.56). The latter is close to the theoretical prediction of D ~MW~(0.5) for perfect Y-shaped brushes in the melt and in nonselective poor solvents. We further compared the phase separation of mixed PtBA/PS brushes grafted on silica particles and PtBA-b-PS diblock copolymers and found that the microphase separation of mixed brushes was weaker than that of diblock copolymers.
机译:我们报告了分子量(MW)对混合接枝在172 nm二氧化硅颗粒上的混合聚丙烯酸叔丁酯(PtBA)/聚苯乙烯(PS)刷的微相分离影响的系统研究。通过在75°C下依次进行tBA的表面引发原子转移自由基聚合(ATRP)和在120°C下由苯乙烯的氮氧化物介导的自由基聚合(NMRP),由带有ATRP引发剂的不对称双官能引发剂官能化的二氧化硅颗粒合成刷子和NMRP烷氧基胺。控制每个样品中两种聚合物的MW彼此相似。制备了一系列混合刷样品,它们具有从13.8至33.1 kDa的不同平均MWs,但总的接枝密度相当,并通过透射电子显微镜(TEM)研究了它们的微相分离。 TEM样品的制备方法是,将混合刷接枝的颗粒的分散体滴入CHCl_3以及水中(通过表面活性剂稳定),然后用RuO_4对刷进行染色。尽管CHCl_3是PtBA和PS的良好溶剂,使刷子分散在TEM网格的碳膜上,但水对于这两种聚合物是非选择性的不良溶剂,导致刷子均匀地塌陷在二氧化硅芯上。所有样品均表现出横向微相分离,形成了几乎双连续的波纹纳米图案。平均纹波波长D随着MW的增加而增加。对于直接从氯仿浇铸的样品,D在研究的MW范围内以MW_(0.70)缩放。对于均匀倒塌的混合水刷,D与MW〜(0.56)成正比。后者接近熔体和非选择性不良溶剂中完美Y形刷子的D〜MW〜(0.5)的理论预测。我们进一步比较了接枝在二氧化硅颗粒上的混合PtBA / PS刷和PtBA-b-PS二嵌段共聚物的相分离,发现混合刷的微相分离比二嵌段共聚物的微相分离弱。

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