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首页> 外文期刊>Materials Chemistry Frontiers >Molecular-level design of excellent reversible thermochromic polydiacetylene materials with the simultaneous enhancement of multiple performances
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Molecular-level design of excellent reversible thermochromic polydiacetylene materials with the simultaneous enhancement of multiple performances

机译:分子水平上设计优秀的可逆的热变色polydiacetylene材料的同时增强多种表演

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Recently, colorimetrically reversible materials have been paid significant attention not only to gain a better understanding of the fundamentals of their chromism but also to create ways to overcome the limitations associated with their colorimetrically irreversible counterparts. Generally, the properties of polydiacetylene (PDA)-based supramolecular materials strongly depend on their molecular packing structures, and the blue-colored PDAs undergo a color change to red when they are exposed to various stimuli. To achieve the reversible structural transition, we rationally designed a new L-Glu (L-glutamic acid)-derivatized diacetylene (DA–Glu) monomer to enhance the hydrogen-bonding interactions. Then, we developed a method to fabricate PDA–Glu/PDMS films, which could be readily obtained by mixing the PDMS precursor with the DA–Glu monomers, curing at an optimal temperature, and subjecting to UV irradiation. The prepared PDA–Glu/PDMS film showed excellent reversible thermochromism property when the temperature changed from 20 to 80 1C. Deep investigations revealed that the reversible ther- mochromism behavior could be attributed to the enhanced hydrogen-bonding interactions and the formation of a network structure in the PDA–Glu/PDMS film, which provided sufficient recovery force and free space for the PDA–Glu structures to reversibly vary with temperature. Further studies demon- strated that the formation of unique network structures did not only endow the PDA–Glu/PDMS film with excellent reversible thermochromism property, but also with good thermal stability and mechanical property. We believe that combining the waterproof property and other advanced properties of PDMS, the prepared PDA–Glu/PDMS films would present very promising applications in many fields. Our research opens a new way to improve the performance of materials and bestow them with novel prop- erties by modifying the monomers at the molecular level. 10.1039/d1qm00721a
机译:最近,colorimetrically可逆的材料不仅显著关注呢更好地理解的基本面的着色异常也创建方法克服与他们相关的限制colorimetrically不可逆转。一般来说,polydiacetylene的属性(PDA)强烈的超分子材料包装取决于其分子结构蓝色pda进行颜色变化红色当他们暴露在各种各样的刺激。实现可逆结构过渡,我们合理设计一个新的L-Glu (L-glutamic酸)-derivatized丁二炔(DA-Glu)单体提高氢键相互作用。我们开发了一个方法来制造PDA-Glu / PDMS电影,这可能是容易获得的混合的PDMS与DA-Glu单体前体,固化在一个最佳的温度,让紫外线照射。显示良好的可逆thermochromism从20到财产时的温度变化80 1 c。可逆——mochromism行为可能增强的氢键交互和网络的形成结构PDA-Glu / PDMS膜,提供足够的恢复力和自由空间PDA-Glu结构的可逆变化与温度。独特的网络结构的形成不仅赋予PDA-Glu / PDMS膜优秀的可逆thermochromism财产,但是还具有良好的热稳定性和机械财产。防水财产和其他高级属性准备PDA-Glu / PDMS PDMS的电影目前在许多非常有前途的应用程序字段。材料和给他们的性能新颖的道具——erties通过修改单体分子水平上。

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