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首页> 外文期刊>RSC Advances >Fabrication of silica nanoparticle based polymer nanocomposites via a combination of mussel inspired chemistry and SET-LRP
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Fabrication of silica nanoparticle based polymer nanocomposites via a combination of mussel inspired chemistry and SET-LRP

机译:通过贻贝启发化学和设定 - LRP的组合制备二氧化硅纳米粒子基聚合物纳米复合材料

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摘要

A highly benign, simple and effective strategy was successfully developed for the first time for the fabrication of hydrophilic thermo-responsive polymer modified silica nanoparticles (SiO2-PDA- poly(NIPAM)) at low temperature and under mild reaction conditions via a combination of mussel inspired chemistry and SET-LRP. The SiO2 NPs were first modified with polydopamine (PDA), which was formed by the self-polymerization of dopamine under rather mild conditions. 2-Bromo-2- methylpropionyl bromide was covalently attached on the surface of the PDA modified SiO2 NPs. Afterward, the poly(NIPAM) was grown in situ on the surface of the Br-containing SiO2 NPs by the SET- LRP method. Consequently, the surface of the SiO2-PDA nanoparticles is intrinsically covered by a layer of free poly(NIPAM) chains, which enables the poly(NIPAM) to be colloidally stable not only at room temperature, but also upon incubation in the presence of proteins under physiological conditions. After modifying with PNIPAM, the functional SiO2 NPs retain their pristine structure, however their dispersibility was significantly improved in polar and nonpolar solutions. As compared with previous methods, the strategy developed in this work is rather simple and effective. More importantly, due to the universality of mussel inspired chemistry, this novel strategy could also be used for the surface modification of many other materials.
机译:首次在低温下在低温下制造亲水热响应聚合物改性二氧化硅纳米型(SiO2-PDA-聚(NIPAM))并通过贻贝组合在温和的反应条件下制造了高度良性,简单,有效的策略。灵感化学和集合LRP。首先用多碳胺(PDA)改性SiO 2 NPS,其通过在相当温和的条件下通过单胺的自聚聚物形成。在PDA改性的SiO2 NPS的表面上共价附着2-溴-2-甲基丙炔基溴。之后,通过设定的方法在含Br的SiO2 NPS的表面上原位生长聚(NIPAM)。因此,SiO2-PDA纳米颗粒的表面被一层游离聚(NIPAM)链覆盖,其使得聚(NIPAM)能够不仅在室温下芯片稳定,而且在蛋白质存在下孵育时也是胶体稳定的在生理条件下。在用肺蛋白修饰后,功能性SiO2 NPS保留其原始结构,但极性和非极性溶液中的分散性显着提高。与以前的方法相比,这项工作中发展的策略相当简单且有效。更重要的是,由于贻贝灵感化学的普遍性,这种新颖的策略也可用于许多其他材料的表面改性。

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  • 来源
    《RSC Advances 》 |2015年第111期| 共7页
  • 作者单位

    Department of Chemistry Nanchang University 999 Xuefu Avenue Nanchang 330031 China.;

    Department of Chemistry Nanchang University 999 Xuefu Avenue Nanchang 330031 China.;

    Department of Chemistry and the Tsinghua Center for Frontier Polymer Research Tsinghua University Beijing 100084 P. R. China.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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