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Self-assembly of nanoparticles onto the surfaces of polystyrene spheres with a tunable composition and loading

机译:纳米粒子自组装到聚苯乙烯球表面上,具有可调的组成和负载

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Functional colloidal materials were prepared by design through the self-assembly of nanoparticles (NPs) on the surfaces of polystyrene (PS) spheres with control over NP surface coverage, NP-to-NP spacing, and NP composition. The ability to control and fine tune the coating was extended to the first demonstration of the co-assembly of NPs of dissimilar composition onto the same PS sphere, forming a multi-component coating. A broad range of NP decorated PS (PS@NPs) spheres were prepared with uniform coatings attributed to electrostatic and hydrogen bonding interactions between stabilizing groups on the NPs and the functionalized surfaces of the PS spheres. This versatile two-step method provides more fine control than methods previously demonstrated in the literature. These decorated PS spheres are of interest for a number of applications, such as catalytic reactions where the PS spheres provide a support for the dispersion, stabilization, and recovery of NP catalysts. The catalytic properties of these PS@NPs spheres were assessed by studying the catalytic degradation of azo dyes, an environmental contaminant detrimental to eye health. The PS@NPs spheres were used in multiple, sequential catalytic reactions while largely retaining the NP coating.
机译:功能性胶体材料是通过在聚苯乙烯(PS)球表面上自组装纳米粒子(NP)并控制NP表面覆盖率,NP到NP间距和NP组成的设计而制备的。控制和微调涂层的能力已扩展到将不同组成的NP共组装到同一PS球上,形成多组分涂层的第一个演示。制备了各种NP装饰的PS(PS @ NPs)球,并使用了均匀的涂层,这归因于NP上稳定基团与PS球的功能化表面之间的静电和氢键相互作用。这种通用的两步法比以前的文献中提供的方法提供了更好的控制。这些修饰的PS球在许多应用中都令人感兴趣,例如催化反应,其中PS球为NP催化剂的分散,稳定和回收提供了支持。这些PS @ NPs球的催化性能是通过研究偶氮染料的催化降解来评估的,偶氮染料是一种有害于眼睛健康的环境污染物。 PS @ NPs球用于多个顺序的催化反应中,同时很大程度上保留了NP涂层。

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