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Access to Metastable Gel States Using Seeded Self-Assembly of Low-Molecular-Weight Gelators

机译:使用低分子量胶凝器的种子自组装进入亚料凝胶状态

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Here we report on how metastable supramolecular gels can be formed through seeded self-assembly of multicomponent gelators. Hydrazone-based gelators decorated with non-ionic and anionic groups are formed in situ from hydrazide and aldehyde building blocks, and lead through multiple self-sorting processes to the formation of heterogeneous gels approaching thermodynamic equilibrium. Interestingly, the addition of seeds composing of oligomers of gelators bypasses the self-sorting processes and accelerates the self-assembly along a kinetically favored pathway, resulting in homogeneous gels of which the network morphologies and gel stiffness are markedly different from the thermodynamically more stable gel products. Importantly, over time, these metastable homogeneous gel networks are capable of converting into the thermodynamically more stable state. This seeding-driven formation of out-of-equilibrium supramolecular structures is expected to serve as a simple approach towards functional materials with pathway-dependent properties.
机译:在这里,我们报告了通过种子自组装的多组分胶凝器的自组装可以如何形成常膜凝胶。用非离子和阴离子基团装饰的腙基凝胶剂由酰肼和醛构建块原位形成,并通过多种自分拣过程来形成异质凝胶接近热力学平衡。有趣的是,加入凝胶器的低聚物的种子组合绕过自分拣过程并沿着动力学上的途径加速自组装,从而产生网络形态和凝胶刚度的均匀凝胶与热力学上更稳定的凝胶显着不同产品。重要的是,随着时间的推移,这些亚稳均匀的凝胶网络能够转化为热力学上更稳定的状态。这种播种驱动的平衡超分子结构的形成预计将作为具有途径依赖性性质的功能材料的简单方法。

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