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Noncovalently Connected Micelles, Nanoparticles, and Metal-Functionalized Nanocages Using Supramolecular Self-Assembly

机译:使用超分子自组装的非共价连接的胶束,纳米粒子和金属功能化的纳米笼。

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摘要

An SCS "pincer"-based nitroxide-mediated polymerization (NMP) initiator has been synthesized and utilized to polymerize fert-butyl acrylate (~tBuA), affording polymers with control over molecular weight and polydispersity. ~1H NMR spectroscopy indicates that the sulfur end group remains intact after deprotection of the P~tBuA segment to yield a poly(acrylic acid) segment. The hydrophilic polymer-tethered SCS ligand has been demonstrated to bind to palladium(ll), as characterized by a distinctive Pd-C shift in the ~(13)C NMR spectrum and a diagnostic metal-to-ligand charge-transfer band in the UV-vis spectrum. A pyridine-functionalized NMP initiator has also been synthesized and used to initiate the NMP of styrene with good control and end group fidelity. The binding of these two chain end ligand-functionalized polymers to form an amphiphilic metallosupramolecular diblock copolymer is facile, as indicated through extended ~1H and ~(13)C NMR studies. The self-assembly of this diblock into well-defined, monodisperse, noncovalently connected micelles (NCCMs) is reported and has been characterized by dynamic light scattering, transmission electron microscopy, and atomic force microscopy. The NCCMs were selectively stabilized throughout the shell layer to produce stable noncovalently connected nanoparticles, resulting in a distinctive reduction in the solution hydrodynamic radius and zeta potential compared to those of the precursor micelle. The hydrophobic core domain was then readily removed via dialysis at low pH to afford a hollow polymeric nanocage with well-defined interior functionality. A significant increase in the solution hydrodynamic radius and shape by AFM analysis was observed upon removal of the core, and the hydrophilic nanocages were shown to be ineffective in the sequestration of hydrophobic dye molecules relative to the parent nanoparticle.
机译:已经合成了一种基于SCS“钳子”的氮氧化物介导的聚合(NMP)引发剂,该引发剂用于聚合丙烯酸叔丁酯(〜tBuA),从而提供可控制分子量和多分散性的聚合物。 〜1 H NMR光谱表明,在P-tBuA链段脱保护以产生聚(丙烯酸)链段后,硫端基保持完整。已证明亲水性聚合物束缚的SCS配体与钯(II)结合,其特征是〜(13)C NMR谱图中有明显的Pd-C位移,并且在Pd-C中具有诊断性的金属-配体电荷转移带紫外可见光谱。还合成了吡啶官能化的NMP引发剂,并以良好的控制和端基保真度将其用于引发苯乙烯的NMP。如通过扩展的〜1H和〜(13)C NMR研究表明,这两个链端配体官能化的聚合物形成两亲性金属超分子双嵌段共聚物的结合很容易。据报道,该二嵌段的自组装成定义明确的,单分散的,非共价连接的胶束(NCCM),并已通过动态光散射,透射电子显微镜和原子力显微镜表征。将NCCM选择性地稳定在整个壳层中,以产生稳定的非共价连接的纳米粒子,与前体胶束相比,溶液的流体动力学半径和Zeta电位显着降低。然后通过低pH值的透析容易地除去疏水核心结构域,从而提供具有明确内部功能的空心聚合物纳米笼。去除核心后,通过AFM分析观察到溶液的流体动力学半径和形状显着增加,并且相对于母体纳米颗粒,亲水性纳米笼显示出对螯合疏水性染料分子无效。

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  • 来源
    《Journal of the American Chemical Society》 |2008年第27期|8714-8725|共12页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:19:41

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