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基于外围烷基链奇偶效应的二炔的面内聚合调控:薄膜中的热致变色可逆性和钢笔用单组分油墨

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.

机构信息

Department of Advanced Organic Materials Engineering , Chungnam National University , 220 Gung-dong , Yuseong-gu, Daejeon 305-764 , South Korea.

出版信息

ACS Appl Mater Interfaces. 2018 Jul 25;10(29):24767-24775. doi: 10.1021/acsami.8b05896. Epub 2018 Jul 11.

Abstract

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 °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 °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 °C.

摘要

炔烃(DAs)的拓扑聚合与其烷基链的长度密切相关。DA 单体具有两种类型的烷基链侧基:内烷基链和外烷基链,即外围烷基链。在此,我们设计并合成了一系列具有不同外围烷基链(n = 6-9;DA1-DA4)的双酰胺键的 DA 单体。这些 DA 单体的外围烷基链长度对拓扑聚合具有奇偶效应。只有当 n 为奇数时才能实现 DAs 的聚合,而当 n 为偶数时则不会发生聚合。使用从头算密度泛函理论计算也研究了拓扑聚合的奇偶效应。使用紫外-可见吸收光谱在 20 至 60°C 的温度范围内研究了聚二乙炔(PDAs)的热致变色可逆性。单体 DA2 用作可在常规纸上转化为热致变色字母的钢笔中的单组分油墨溶液。此外,包含 PDA 的聚氧化乙烯薄膜被包含在内以监测热致变色的可逆性,并且发现在 20 至 100°C 之间具有优异的热致变色可逆性和稳定性,可以存储数月而不会变形。最后,通过减法颜色(蓝色和黄色)混合方法很容易获得绿色图案化聚合物膜,并且在 20 至 100°C 之间表现出高的热致变色可逆性。

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