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一种可溶性、低温热致变色和化学反应性的聚二乙炔。

A soluble, low-temperature thermochromic and chemically reactive polydiacetylene.

机构信息

Department of Chemical Engineering and ‡Institute of Nanoscience and Technology, Hanyang University , Seoul 133-791, Korea.

出版信息

ACS Appl Mater Interfaces. 2013 Sep 11;5(17):8805-12. doi: 10.1021/am402701n. Epub 2013 Aug 21.

Abstract

The majority of polydiacetylenes (PDAs) described to date display thermochromic transitions above room temperature. By following a strategy that employs headgroups that do not participate in strong interactions, we have designed and prepared a liquid diacetylene (DA) monomer that solidifies at a temperature near 0 °C. The isocyanate-containing DA monomer, DA-NCO, having this property does not undergo polymerization in its liquid state at room temperature. However, UV irradiation of frozen DA-NCO at 0 °C causes the instantaneous formation of a blue PDA (PDA-NCO). Interestingly, PDA-NCO was found to display a sharp blue-to-red color transition at a temperature near 11 °C. By taking advantage of its room temperature liquid-phase property, we were able to readily transfer the DA monomer to solid substrates by using common stamping and writing methods used for creating patterned PDA images. In addition, PDA-NCO dissolves in chloroform, giving a yellow solution that becomes red and simultaneously generates polymer aggregates when hexane is added. Finally, the isocyanate moieties present in PDA-NCO have been utilized to differentiate 1° from 2° and 3° amines owing to the fact that a chloroform solution of PDA-NCO undergoes a rapid yellow-to-red color change associated with an insoluble urea-forming reaction with primary amines.

摘要

迄今为止,大多数聚二乙炔(PDA)在室温以上显示热致变色转变。通过采用不参与强相互作用的头基的策略,我们设计并制备了一种在接近 0°C 温度下固化的液体二乙炔(DA)单体。具有此性质的含异氰酸酯的 DA 单体 DA-NCO 在室温下的液态中不会聚合。然而,在 0°C 下对冷冻的 DA-NCO 进行紫外线照射会导致瞬时形成蓝色 PDA(PDA-NCO)。有趣的是,发现 PDA-NCO 在接近 11°C 的温度下显示出明显的蓝-红颜色转变。利用其室温下的液相性质,我们能够通过使用常见的用于创建图案化 PDA 图像的模压和书写方法,将 DA 单体轻易地转移到固体基底上。此外,PDA-NCO 可溶于氯仿,形成黄色溶液,当加入己烷时,溶液会变成红色并同时生成聚合物聚集体。最后,由于 PDA-NCO 中的异氰酸酯部分与伯胺发生不溶性脲形成反应,导致 PDA-NCO 的氯仿溶液发生快速的黄-红颜色变化,因此可以区分 1°、2°和 3°胺。

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