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Chain Conformations at the Surface of a Polydisperse Amphiphilic Comb Copolymer Film

机译:多分散两亲梳状共聚物薄膜表面的链构象

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摘要

Comb copolymers comprising a poly(methyl methacrylate) (PMMA) backbone and short, polyethylene oxide (PEO) side chains, PMMA-g-PEO, have been proposed to self-organize at the polymer/water interface, resulting in the quasi-2D confinement of the backbone for chains at the immediate surface of PMMA-g-PEO films (D.J. Irvine et al., Biomacromolecules >2001, 2, 85-94). To directly probe such 2D conformations, combs modified with maleimide groups on the PEO chain ends were blended at 0.5-10 wt% into unmodified PMMA-g-PEO (Mn 142 kg/mol, PDI 3.2, 32 wt% PEO) and cast into films ∼35 nm thick. Films were immersed in aqueous solution to induce orientation of surface molecules, and maleimide-functionalized chains at the film/water interface were labeled with 1.4 nm dia. Au nanoparticles. Transmission electron microscopy (TEM) was then used to trace the 2D trajectories of nanoparticle-decorated chains. The distribution of observed chain lengths was in good agreement with that from gel permeation chromatography. The 2D radius of gyration (Rg) calculated from the observed conformations scaled with number of backbone segments (N) as Rg∼N0.69±0.02. Monte Carlo simulations of a 2D melt of comparable chain length distribution yielded a scaling exponent ν=0.67±0.03, suggesting that the deviation from 2D melt behavior arose from polydispersity.
机译:已提出包含聚甲基丙烯酸甲酯(PMMA)主链和聚环氧乙烷(PEO)短侧链的梳状共聚物PMMA-g-PEO在聚合物/水界面处自组织,从而形成准二维在PMMA-g-PEO薄膜的直接表面限制链的骨架(DJ Irvine等人,Biomacromolecules > 2001 ,第2、85-94页)。为了直接探测此类2D构象,将PEO链末端用马来酰亚胺基团修饰的梳子以0.5-10 wt%的比例混入未修饰的PMMA-g-PEO(Mn 142 kg / mol,PDI 3.2,32 wt%PEO)中并铸成膜厚约35 nm。将膜浸入水溶液中以诱导表面分子的取向,并用1.4 nm直径标记膜/水界面处的马来酰亚胺官能化链。金纳米颗粒。然后使用透射电子显微镜(TEM)来追踪纳米粒子修饰链的2D轨迹。观察到的链长的分布与凝胶渗透色谱法的分布非常一致。根据观察到的构象计算出的二维回转半径(Rg)与主链节段数(N)成比例,为Rg〜N 0.69±0.02 。链长分布可比的2D熔体的蒙特卡洛模拟产生了缩放指数ν= 0.67±0.03,这表明与2D熔体行为的偏差是由多分散性引起的。

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