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Supercooling of functional alkyl-π molecular liquids

机译:功能性烷基-π分子液体的过冷

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摘要

Metastable states of soft matters are extensively used in designing stimuli-responsive materials. However, the non-steady properties may obstruct consistent performance. Here we report an approach to eradicate the indistinguishable metastable supercooled state of functional molecular liquids (FMLs), which remains as a liquid for weeks or months before crystallizing, via rational molecular design. The phases (solid, kinetically stable liquid, and supercooled liquid) of a model FML, branched alkyl chain-substituted 9,10-diphenylanthracene (>DPA), are found to be governed by subtle alterations of the molecular structure (alkyl->DPA ratio and bulkiness of the >DPA unit). We thus outline molecular design principles to avoid supercooled FML formation. Moreover, we demonstrate a practical technique to rapidly discriminate supercooled FMLs (within 5 h) by accelerating their crystallization in differential scanning calorimetry heating via pre-annealing or relatively slow scanning.
机译:软物质的亚稳态被广泛用于设计刺激响应材料。但是,不稳定属性可能会阻碍一致的性能。在这里,我们报告了一种通过合理的分子设计来消除功能性分子液体(FML)难以区分的亚稳态过冷状态的方法,该功能状态在结晶前会保持数周或数月。发现FML模型支链烷基链取代的9,10-二苯基蒽(> DPA )的相(固体,动力学稳定的液体和过冷的液体)受分子的细微变化控制结构(烷基-> DPA 的比例和> DPA 单元的体积)。因此,我们概述了分子设计原理,以避免过冷的FML形成。此外,我们展示了一种实用技术,可通过在预扫描或相对慢速扫描的差示扫描量热法中加速过冷的FML(在5小时内)的结晶来快速区分。

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