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Perylene bisimide hydrogels and lyotropic liquid crystals with temperature-responsive color change

机译:ylene双酰亚胺水凝胶和溶致液晶具有随温度变化的颜色变化

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摘要

The self-assembly of perylene bisimide (PBI) dyes bearing oligo ethylene glycol (OEG) units in water affords responsive functional nanostructures characterized by their lower critical solution temperature (LCST). Tuning of the LCST is realized by a supramolecular approach that relies on two structurally closely related PBI–OEG molecules. The two PBIs socially co-assemble in water and the resulting nanostructures exhibit a single LCST in between the transition temperatures of the aggregates formed by single components. This permits to precisely tune the transition from a hydrogel to a lyotropic liquid crystal state at temperatures between 26 and 51 °C by adjusting the molar fraction of the two PBIs. Owing to concomitant changes in PBI–PBI interactions this phase transition affords a pronounced color change with “fluorescence-on” response that can be utilized as a smart temperature sensory system.
机译:在水中带有低聚乙二醇(OEG)单元的per双酰亚胺(PBI)染料的自组装可提供响应性功能纳米结构,其特征在于其较低的临界溶液温度(LCST)。 LCST的调谐通过超分子方法来实现,该方法依赖于两个结构上密切相关的PBI-OEG分子。两种PBI在水中社会共组装,并且所得的纳米结构在由单一组分形成的聚集体的转变温度之间表现出单一的LCST。通过调节两个PBI的摩尔分数,可以在26至51°C的温度下精确调节从水凝胶到溶致液晶态的转变。由于PBI-PBI相互作用的伴随变化,这种相变提供了明显的颜色变化和“荧光开启”响应,可以用作智能温度传感系统。

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