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一种可水解的超两亲分子作为马兰戈尼自推进燃料,用于高效的宏观超分子自组装。

A Hydrolyzable Supra-amphiphile as a Marangoni Self-Propulsion Fuel for Efficient Macroscopic Supramolecular Self-Assembly.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing Laboratory of Biomedical Materials, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, 15 Beisanhuan East Road, Chaoyang District, Beijing, 100029, China.

出版信息

Angew Chem Int Ed Engl. 2023 Apr 3;62(15):e202300448. doi: 10.1002/anie.202300448. Epub 2023 Feb 28.

Abstract

Self-assembly of μm-to-mm components is important for achieving all-scale ordering with requirements of extra energy for motion and interaction of components. Marangoni flows caused by surfactants on water provide appropriate energy but have limited lifetimes because of the inevitable interfacial aggregation and difficult decomposition of aggregated covalent surfactants that inactivate Marangoni effects. Here we have synthesized a supra-amphiphile Marangoni "fuel"-sodium-4-(benzylideneamino) benzenesulfonate (SBBS)-that can be hydrolyzed in a timely manner to a species without surface activity to extend the motion time by 10-fold. The motion was optimized at pH=2 by a fine equilibrium between the releasing and removal of interfacial SBBS, leading to the self-assembly of millimeter-scaled ordered dimers. The underlying mechanism was interpreted by motion analyses and simulation. This strategy provides an active solution to self-assembly at the μm-to-mm scale, as well as interactive ideas between miniaturized chemical robots.

摘要

微米到毫米级组件的自组装对于实现全尺度有序排列非常重要,因为这需要额外的能量来驱动组件的运动和相互作用。表面活性剂在水面上产生的 Marangoni 流提供了适当的能量,但由于界面聚集和聚集共价表面活性剂的难以分解,Marangoni 效应不可避免地会失活,因此其寿命有限。在这里,我们合成了一种超两亲性的 Marangoni“燃料”-对-(亚苄基氨基)苯磺酸钠(SBBS)-它可以及时水解为无表面活性的物质,从而将运动时间延长 10 倍。通过界面 SBBS 的释放和去除之间的精细平衡,在 pH=2 时优化了运动,导致毫米级有序二聚体的自组装。通过运动分析和模拟解释了其潜在机制。该策略为微米到毫米级的自组装提供了一种主动解决方案,同时也为微型化学机器人之间的交互提供了思路。

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