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A case of adaptive self-assembly

机译:自适应自组装的情况

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We report in this paper direct observation of redox-induced uptake of a charged species in micelles with a complex coacervate core, using a system consisting of negatively charged iron-coordination polymers and positively charged-b-neutral block co-polyelectrolytes. Neutral, charge-balanced micelles are first prepared by stoichiometric mixing of the oppositely charged components. Upon a redox stimulus, the micelles develop excess charges, which (as proposed in our previous work) most likely lead to sequestration of oppositely charged species, as the charge balance has to be restored. In this work we verify this prediction by using a rigid, rod-like iron coordination polymer, namely, the positively charged MEPE, as the species to be taken up. After uptake of this rigid cargo, the morphology of the micelles was found to transform from spheres to banana-shaped bundles and fibers, which clearly indicate the uptake of MEPE in the micellar core. Our result proves that the redox stimulus indeed induces excess charges in the core, which forces the self-assembled particles to change both composition and shape. As an interesting example of "adaptive self-assembly' our findings also pave the way to novel redox-triggered uptake and release systems.
机译:我们在本文中报道了使用由带负电的铁配位聚合物和带正电的b-中性嵌段共聚电解质组成的系统,直接观察氧化还原诱导的胶束中具有复杂凝聚层核心的带电物质的摄取。首先通过化学计量混合带相反电荷的组分来制备中性,电荷平衡的胶束。受到氧化还原刺激后,胶束会产生过量电荷,这(如我们先前的工作所建议)会导致螯合带相反电荷的物种,因为必须恢复电荷平衡。在这项工作中,我们通过使用刚性的棒状铁配位聚合物(即带正电荷的MEPE)作为要吸收的物质,验证了这一预测。吸收了这种刚性货物后,发现胶束的形态从球形转变为香蕉形的束和纤维,这清楚地表明胶束核心中对MEPE的吸收。我们的结果证明,氧化还原刺激确实会在铁芯中感应出多余的电荷,从而迫使自组装粒子同时改变其组成和形状。作为“自适应自组装”的有趣示例,我们的发现也为新型氧化还原触发的摄取和释放系统铺平了道路。

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