Matsumoto Kazuma, Iwata Naoto, Furumi Seiichi
Department of Chemistry, Graduate School of Science, Tokyo University of Science, 1-3 Kagurazaka, Shinjuku, Tokyo 162-8601, Japan.
Polymers (Basel). 2024 Jan 31;16(3):401. doi: 10.3390/polym16030401.
Cellulose derivatives have attracted attention as environmentally friendly materials that can exhibit a cholesteric liquid crystal (CLC) phase with visible light reflection. Previous reports have shown that the chemical structures and the degrees of substitution of cellulose derivatives have significant influence on their reflection properties. Although many studies have been reported on CLC using ethyl cellulose (EC) derivatives in which the hydroxy groups are esterified, there have been no studies on EC derivatives with etherified side chains. In this article, we optimized the Williamson ether synthesis to introduce pentyl ether groups in the EC side chain. The degree of substitution with pentyl ether group (), confirmed via H-NMR spectroscopic measurements, was controlled using the solvent and the base concentration in this synthesis. All the etherified EC derivatives were soluble in methacrylic acid (MAA), allowing for the preparation of lyotropic CLCs with visible reflection. Although the reflection peak of lyotropic CLCs generally varies with temperature, the reflection peak of lyotropic CLCs of completely etherified EC derivatives with MAA could almost be preserved in the temperature range from 30 to 110 °C even without the aid of any crosslinking. Such thermal stability of the reflection peak of CLCs may be greatly advantageous for fabricating new photonic devices with eco-friendliness.
纤维素衍生物作为一种环境友好型材料受到关注,它能够呈现出具有可见光反射特性的胆甾相液晶(CLC)相。先前的报道表明,纤维素衍生物的化学结构和取代度对其反射特性有显著影响。尽管已经有许多关于使用羟基被酯化的乙基纤维素(EC)衍生物制备CLC的研究报道,但尚未有关于具有醚化侧链的EC衍生物的研究。在本文中,我们优化了威廉姆森醚合成法,以在EC侧链中引入戊基醚基团。通过¹H-NMR光谱测量确认的戊基醚基团的取代度(),在该合成过程中通过控制溶剂和碱浓度来进行调控。所有醚化的EC衍生物都可溶于甲基丙烯酸(MAA),从而能够制备出具有可见光反射的溶致CLC。尽管溶致CLC的反射峰通常会随温度变化,但即使不借助任何交联,完全醚化的EC衍生物与MAA形成的溶致CLC的反射峰在30至110°C的温度范围内几乎可以保持不变。CLC反射峰的这种热稳定性对于制造具有环境友好性的新型光子器件可能具有极大的优势。