首页> 外文期刊>ACS applied materials & interfaces >Tuning of the Topochemical Polymerization of Diacetylenes Based on an Odd/Even Effect of the Peripheral Alkyl Chain: Thermochromic Reversibility in a Thin Film and a Single-Component Ink for a Fountain Pen
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Tuning of the Topochemical Polymerization of Diacetylenes Based on an Odd/Even Effect of the Peripheral Alkyl Chain: Thermochromic Reversibility in a Thin Film and a Single-Component Ink for a Fountain Pen

机译:基于外周烷基链的奇数/均匀效应调整二乙炔的类别化学聚合:薄膜中的热致变色可逆性和钢笔的单组分墨水

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The topochemical polymerization of diacetylenes (DAs) is closely related to the length of their alkyl chain. DA monomers have two types of alkyl chain side groups: the inner alkyl chain and the outer alkyl chain, that is, the peripheral alkyl chain. Herein, we designed and synthesized a series of DA monomers that possess bis-amide linkages with different peripheral alkyl chains (n = 6-9; DA1-DA4). The peripheral alkyl chain length of these DA monomers exhibits an odd/even effect on topochemical polymerization. The polymerization of DAs was achieved only when n is an odd number, whereas no polymerization occurred when n is an even number. The odd/even effect on the topochemical polymerization was also investigated using ab initio density functional theory calculations. The thermochromic reversibility of polydiacetylenes (PDAs) was investigated using UV-vis absorption spectroscopy at temperatures ranging from 20 to 60 degrees C. Monomer DA2 was used as a single-component ink solution in a fountain pen that can be transformed into thermochromic letters on conventional paper. Furthermore, a PDA-embedded polyethylene oxide film was included to monitor the thermochromic reversibility and was found to exhibit excellent thermochromic reversibility between 20 and 100 degrees C and stability, enabling storage for a few months without deformation. Finally, a green-colored patterned polymer film is readily obtained by a subtractive color (blue and yellow) mixing method and exhibits high thermochromic reversibility at temperatures between 20 and 100 degrees C.
机译:二乙炔(DAS)的Topochemical聚合与其烷基链的长度密切相关。达单体具有两种类型的烷基链侧基:内烷基链和外烷基链,即外周烷基链。在此,我们设计和合成了一系列具有与不同外周烷基链的双酰胺键(n = 6-9; da1-da4)的双酰胺键的一系列单体。这些DA单体的外周烷基链长度表现出对Topochemical聚合的奇数/甚至效果。只有当n是奇数时,才能实现DAS的聚合,而当N是偶数时,不会发生聚合。还使用AB Initio密度函数理论计算研究了对Topochemical聚合的奇数/甚至效果。在20至60℃的温度下使用UV-Vis吸收光谱研究了多迪亚替亚乙烯(PDA)的热致变色可逆性。单体DA2用作钢笔中的单组分油墨溶液,可以转化为常规的热致变色字母纸。此外,包括PDA嵌入的聚环氧乙烷膜以监测热致变色的可逆性,并发现在20至100摄氏度和稳定性之间具有优异的热致变色可逆性,使得储存几个月而不会变形。最后,通过减树(蓝色和黄色)混合方法容易地获得绿色图案化聚合物膜,在20至100摄氏度的温度下表现出高的热致变色可逆性。

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