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Dynamic and programmable morphology and size evolution via a living hierarchical self-assembly strategy

机译:通过实时的分层自组装策略实现动态和可编程形态以及尺寸演变

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摘要

Recent advances in the preparation of shape-shifting and size-growing nanostructures are hot topics in development of nanoscience, because many intelligent functions are always relied on their shape and dimension. Here we report a tunable manipulation of sequential self-assembled transformation in situ via a hierarchical assembly strategy based on a living thiol–disulfide exchange reaction. By tailoring the external stimuli, the reactive points can be generated at the ends of initially unimolecular micelles, which subsequently drive the pre-assemblies to periodically proceed into the hierarchically micellar connection, axial growth, bending, and cyclization processes from nanoscopic assemblies to macroscopic particles. Of particular interest would be systems that acquired the shape control and size adjustment of self-assemblies after termination or reactivation of disulfide reshuffling reaction by regulating external stimuli whenever needed. Such a hierarchical strategy for self-assembled evolution is universally applicable not only for other disulfide-linked dendritic polymers but also for exploitation of biological applications.
机译:形变和尺寸增长的纳米结构的制备方面的最新进展是纳米科学发展的热门话题,因为许多智能功能始终依赖于它们的形状和尺寸。在这里,我们报告了通过基于活性巯基-二硫键交换反应的分级组装策略,就地进行顺序自组装转化的可调操作。通过定制外部刺激,可以在最初的单分子胶束的末端生成反应点,这随后会驱动预装配体周期性地进入到从纳米级装配体到宏观粒子的分层胶束连接,轴向生长,弯曲和环化过程。特别令人感兴趣的是在需要时通过调节外部刺激在二硫键改组反应终止或重新激活后获得形状控制和自组装体尺寸调节的系统。这种用于自组装进化的分级策略不仅普遍适用于其他二硫键连接的树枝状聚合物,而且还适用于生物应用的开发。

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