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首页> 外文期刊>Macromolecules >Chain Dispersity Effects on Brush Properties of Surface-Grafted Polycaprolactone-Modified Silica Nanoparticles: Unique Scaling Behavior in the Concentrated Polymer Brush Regime
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Chain Dispersity Effects on Brush Properties of Surface-Grafted Polycaprolactone-Modified Silica Nanoparticles: Unique Scaling Behavior in the Concentrated Polymer Brush Regime

机译:链分散性对表面接枝聚己内酯改性二氧化硅纳米粒子刷性能的影响:浓缩聚合物刷子方案中的独特缩放行为

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摘要

Silica nanoparticles (R-h = 70 nm) were functionalized with high dispersity (D > 2.3) polycaprolactone at various grafting densities, and the brush properties were investigated using dynamic light scattering. Owing to recent advances in controlled polymerization techniques, low dispersity brushes are easily grafted from nanoparticle surfaces, and these systems have been well studied. However, the effect of high dispersity brushes on nanoparticle surfaces is largely unexplored. Here we discuss the brush properties of high dispersity polycaprolactone-grafted silica nanoparticles. Because of the polymerization conditions used, transesterification events are induced during the polymerization to give brushes with increasing dispersity both as brush length increases and as grafting density is increased (e.g., D from 1.32 to 2.39 for sigma from 0.21 to 0.61 chains/nm(2)). All grafting densities showed extended chains in the concentrated polymer brush regime, with brush length, l(b), scaling with degree of polymerization, l(b) similar to N-a, where a = 1.39, 1.47, and 1.84 for the high, mid, and low grafting density sets. This study provides the first experimental insight into the effects of increasing chain dispersity on brush properties of nanoparticle systems. Furthermore, this system offers a facile method to tune dispersity of grafted brushes concurrent with the grafting polymerization. We expect this work to be of significant interest to the ongoing study of fundamental properties of polymer brushes as well as these materials finding use in polymer composite applications and provide enhanced mechanical properties compared to their monodisperse analogues.
机译:用高分子(D> 2.3)聚己内酯在各种接枝密度下官能化二氧化硅纳米颗粒(R-H = 70nm),并使用动态光散射研究刷子性能。由于近期受控聚合技术的进展,低分散刷从纳米颗粒表面容易地接枝,并且这些系统已经很好地研究。然而,高分子刷对纳米粒子表面的影响大大是未探斗的。在这里,我们探讨了高分子聚己内酯接枝二氧化硅纳米粒子的刷子性能。由于所用的聚合条件,在聚合过程中诱导酯交换事件,以使刷子随着刷子长度的增加而增加,随着刷子长度增加并且由于从0.21至0.61链/ 0.61链/ 0.61链中的1.32至2.39增加1.32至0.61链/ nm(2 )))。所有接枝密度显示浓缩的聚合物刷子制度中的延伸链,刷子长度,L(b),具有与聚合程度的缩放,L(b)类似于Na,其中a = 1.39,1.47和1.84为高,中间和低接枝密度集。本研究提供了第一种实验洞察增加链分散性对纳米粒子系统刷性能的影响。此外,该系统提供了与接枝聚合同时调谐接枝刷的分散性的容易方法。我们预计这项工作对于对聚合物刷的基本性质以及这些材料在聚合物复合应用中使用的这些材料以及与其单分发类似物相比提供增强的机械性能的研究。

著录项

  • 来源
    《Macromolecules》 |2017年第14期|共9页
  • 作者

    Bentz Kyle C.; Savin Daniel A.;

  • 作者单位

    Univ Florida Dept Chem Ctr Macromol Sci &

    Engn George &

    Josephine Butler Polymer Res Lab Gainesville FL 32611 USA;

    Univ Florida Dept Chem Ctr Macromol Sci &

    Engn George &

    Josephine Butler Polymer Res Lab Gainesville FL 32611 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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