Forging out-of-equilibrium supramolecular gels

N/A CHEMISTRY, MULTIDISCIPLINARY Nature synthesis Pub Date : 2024-09-06 DOI:10.1038/s44160-024-00623-4
Simona Bianco, Fin Hallam Stewart, Santanu Panja, Asra Zyar, Emma Bowley, Marko Bek, Roland Kádár, Ann Terry, Roberto Appio, Tomás S. Plivelic, Mahon Maguire, Harish Poptani, Marco Marcello, Ravi R. Sonani, Edward H. Egelman, Dave J. Adams
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Abstract

The design of supramolecular hydrogels comprising aligned domains is important for the fabrication of biomimetic materials and applications in optoelectronics. One way to access such materials is by the self-assembly of small molecules into long fibres, which can be aligned using an external stimulus. Out-of-equilibrium supramolecular gels can also be designed, where pre-programmed changes of state can be induced by the addition of chemical fuels. Here we exploit these dynamic properties to form materials with aligned domains through a ‘forging’ approach: an external force is used to rearrange the underlying network from random to aligned fibres as the system undergoes a pre-programmed gel-to-sol-to-gel transition. We show that we can predictably organize the supramolecular fibres, leading to controllable formation of materials with aligned domains through a high degree of temporal control.

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锻造失衡超分子凝胶
设计包含对齐结构域的超分子水凝胶对于制造仿生物材料和光电子学应用非常重要。获得此类材料的一种方法是将小分子自组装成长纤维,在外部刺激下对齐。此外,还可以设计失衡超分子凝胶,通过添加化学燃料诱导预先设定的状态变化。在这里,我们利用这些动态特性,通过 "锻造 "方法形成具有对齐结构域的材料:当系统经历预设的凝胶到溶胶再到凝胶的转变时,利用外力将底层网络从随机纤维重新排列为对齐纤维。我们的研究表明,我们可以预测超分子纤维的组织情况,从而通过高度的时间控制,可控地形成具有对齐结构域的材料。
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