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Co-operative transitions of responsive-polymer coated gold nanoparticles ; precision tuning and direct evidence for co-operative aggregation

机译:响应聚合物包覆的金纳米粒子的协同转变;精确调整和合作聚集的直接证据

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摘要

Responsive polymers and polymer-coated nanoparticles have many potential bio-applications with the crucial parameter being the exact temperature where the transition occurs. Chemical modification of hydrophobic/hydrophilic or ligand binding sites has been widely explored as a tool for controlling this transition, but requires the synthesis of many different components to achieve precise control. This study reports an extensive investigation into the use of blending (i.e. mixing) as a powerful tool to modulate the transition temperature of poly(N-isopropylacrylamide) (PNIPAM) coated gold nanoparticles. By simply mixing two nanoparticles of different compositions, precise control over the transition temperature can be imposed. This was shown to be flexible to all possible mixing parameters (different polymers on different particles, different polymers on same particles and different sized particles with identical/different polymers). Evidence of the co-operative aggregation of differently sized nanoparticles (with different cloud points) is shown using transmission electron microscopy; particles with higher cloud points aggregate with those with lower cloud points with homo-aggregates not seen, demonstrating the co-operative behaviour. These interactions, and the opportunities for transition tuning will have implications in the rational design of responsive biomaterials.udud
机译:响应性聚合物和聚合物涂覆的纳米颗粒具有许多潜在的生物应用,其关键参数是发生转变的确切温度。疏水/亲水或配体结合位点的化学修饰已被广泛研究为控制这种转变的工具,但需要合成许多不同的组分才能实现精确控制。这项研究报告了对混合(即混合)作为调节聚(N-异丙基丙烯酰胺)(PNIPAM)涂覆的金纳米粒子的转变温度的有力工具的用途的广泛研究。通过简单地混合两种不同组成的纳米粒子,可以对转变温度进行精确控制。已证明这对所有可能的混合参数(不同聚合物在不同颗粒上,不同聚合物在相同颗粒上以及具有相同/不同聚合物的不同尺寸颗粒)具有灵活性。使用透射电子显微镜显示了不同大小的纳米粒子(具有不同浊点)的协同聚集的证据。浊点较高的颗粒聚集在一起,而浊点较低的颗粒则聚集在一起,没有聚集现象,这表明了合作行为。这些相互作用以及过渡调整的机会将对响应性生物材料的合理设计产生影响。 ud ud

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