论文标题

接头柔韧性对链接胶体凝胶的相位行为和结构的影响

Effects of linker flexibility on phase behavior and structure of linked colloidal gels

论文作者

Howard, Michael P., Sherman, Zachary M., Sreenivasan, Adithya N, Valenzuela, Stephanie A., Anslyn, Eric V., Milliron, Delia J., Truskett, Thomas M.

论文摘要

胶体纳米晶体凝胶可以使用功能上的“接头”分子组装,以介导纳米晶体之间的键合。凝胶化和凝胶结构的条件是通过接头浓度来控制宏观的,并通过接头的分子特性在显微镜下控制。在这里,我们证明了使用玩具模型进行胶体链链链混合物,该链接链柔性在确定混合物的相行为和结构中起着关键作用。我们固定接头长度,并系统地改变其弯曲刚度,以跨越柔性,半融合和僵化的态度。在固定接头浓度下,在低胶体体积分数下在低胶体体积分离的柔性链和刚性链链混合物与一阶热力学扰动理论的预测一致,但半插线链混合物却没有。我们将这种不同的行为与不良的“循环”相关联,将其连接的基序链接在一起,这些图案被预测对于与胶体上化学键合位置相称的端到端距离的接头更为普遍。连接器的灵活性还影响链接的胶体之间的间距,提出了设计具有所需相行为,结构和扩展结构依赖性特性的凝胶的策略。

Colloidal nanocrystal gels can be assembled using a difunctional "linker" molecule to mediate bonding between nanocrystals. The conditions for gelation and the structure of the gel are controlled macroscopically by the linker concentration and microscopically by the linker's molecular characteristics. Here, we demonstrate using a toy model for a colloid-linker mixture that linker flexibility plays a key role in determining both phase behavior and structure of the mixture. We fix the linker length and systematically vary its bending stiffness to span the flexible, semiflexible, and rigid regimes. At fixed linker concentration, flexible-linker and rigid-linker mixtures phase separate at low colloid volume fractions in agreement with predictions of first-order thermodynamic perturbation theory, but the semiflexible-linker mixtures do not. We correlate and attribute this qualitatively different behavior to undesirable "loop" linking motifs that are predicted to be more prevalent for linkers with end-to-end distances commensurate with the locations of chemical bonding sites on the colloids. Linker flexibility also influences the spacing between linked colloids, suggesting strategies to design gels with desired phase behavior, structure, and by extension, structure-dependent properties.

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