首页> 外文期刊>European Polymer Journal >Polymerization-induced phase separation as a one-step strategy to self-assemble alkanethiol-stabilized gold nanoparticles inside polystyrene domains dispersed in an epoxy matrix
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Polymerization-induced phase separation as a one-step strategy to self-assemble alkanethiol-stabilized gold nanoparticles inside polystyrene domains dispersed in an epoxy matrix

机译:聚合诱导的相分离是一步一步的策略,可在分散在环氧基质中的聚苯乙烯域内部自组装烷硫醇稳定的金纳米颗粒

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The rational design of nanoparticle (NP)/polymer composites with advanced functional properties is based on controlling the distribution and self-assembly of NPs in the polymer matrix. In this study we report a new one-step strategy to produce the self-assembly of alkanethiol-stabilized Au NPs in one of the phases generated by polymerization-induced phase separation. The polymerization of a formulation composed of stoichiometric amounts of diglycidylether of bisphenol A (DGEBA) and m-xylylenediamine (mXDA), containing polystyrene (PS) and dodecanethiol-stabilized Au NPs as modifiers, produced the phase separation of PS and Au NPs into microdomains dispersed in the epoxy matrix. A subsequent phase separation and self-assembly of Au NPs took place inside the PS domains leading to an increase in their concentration in a region close to the interface as revealed by TEM images. SAXS spectra showed that NPs self-assembled as colloidal crystals with a body-centered cubic (bcc) structure. By an adequate selection of the amount of PS and the nature of the epoxy precursors, different morphologies of the final blend could be generated. This brings the possibility of controlling the dispersion and self-assembly of NPs in the final material.
机译:具有先进功能特性的纳米颗粒(NP)/聚合物复合材料的合理设计基于控制NP在聚合物基质中的分布和自组装。在这项研究中,我们报告了一种新的一步策略,以在由聚合诱导的相分离产生的相之一中产生链烷硫醇稳定的Au NP的自组装。由化学计量的双酚A二缩水甘油醚(DGEBA)和间苯二甲二胺(mXDA)组成的配方的聚合,其中含有聚苯乙烯(PS)和十二烷硫醇稳定的Au NPs作为改性剂,将PS和Au NPs相分离成微区分散在环氧基质中。 TEM图像显示,Au NP的随后相分离和自组装在PS域内部发生,导致它们在靠近界面的区域中的浓度增加。 SAXS光谱表明,NPs自组装为具有体心立方(bcc)结构的胶体晶体。通过适当选择PS的量和环氧前体的性质,可以生成最终混合物的不同形态。这带来了控制最终材料中NP的分散和自组装的可能性。

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