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Reversible Micro- and Nano- Phase Programming of Anthraquinone Thermochromism Using Blended Block Copolymers

机译:使用共混嵌段共聚物进行蒽醌热致变色的可逆微相和纳米相编程

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摘要

Here, we present an approach to generate materials with programmable thermochromic transition temperatures (TTTs), based on the reversible microcrystallization of anthraquinone dyes with the assistance of blended Pluronic block copolymers. At temperatures above block copolymer critical micellization temperature (CMT), hydrophobic anthraquinone dyes, including sudan blue II, were dispersed in copolymer micelles, whereas at lower temperature, the dyes formed microcrystals driven by the dye-dye and dye-Pluronic molecular interactions. The crystallization process altered the optical properties of the dye with bathochromatic shifts detectable by eye and the thermochroic process was fully reversible. Not only could Pluronic reversibly incorporate the anthraquinone dyes into micelles at elevated temperatures, but it also modulated the crystallization process and resulting morphology of microcrystals via tuning the molecular interactions when the temperature was lowered. Crystal melting transition points (and TTTs) were in agreement with the CMTs, demonstrating that the thermochromism was dependent on block copolymer micellization. Thermochromism could be readily programmed over a broad range of temperatures by changing the CMT by using different types and concentrations of Pluronics and combinations thereof.
机译:在这里,我们提出了一种基于蒽醌染料可逆微晶化并借助Pluronic嵌段共聚物共混物生成具有可编程热致变色温度(TTT)的材料的方法。在高于嵌段共聚物临界胶束化温度(CMT)的温度下,包括蒽蓝II在内的疏水蒽醌染料被分散在共聚物胶束中,而在较低温度下,染料形成了由染料-染料和染料-Pluronic分子相互作用驱动的微晶。结晶过程改变了染料的光学性质,肉眼可检测到红移,并且热变色过程是完全可逆的。 Pluronic不仅可以在高温下将蒽醌染料可逆地掺入胶束中,而且还可以通过在温度降低时调节分子相互作用来调节结晶过程和微晶形态。晶体的熔融转变点(和TTT)与CMT一致,表明热致变色取决于嵌段共聚物的胶束化作用。通过使用不同类型和浓度的Pluronics及其组合来更改CMT,可以在很宽的温度范围内轻松编程热致变色。

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  • 年(卷),期 -1(31),50
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  • 页码 13488–13493
  • 总页数 12
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