Iwasaki Koki, Matsuo Yutaka
Department of Chemical Systems Engineering, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Aichi, Japan.
Institute of Materials Innovation, Institutes for Future Society, Nagoya University, Nagoya 464-8603, Aichi, Japan.
Molecules. 2025 Apr 14;30(8):1761. doi: 10.3390/molecules30081761.
A pressure-sensitive elastomer film incorporating fluorenylidene-acridane (FA) in its folded conformation was successfully developed for use in pressure-sensitive applications. The elastomer network was swollen with acetone, creating space to accommodate FA molecules. Although FA dissolved in acetone and adopted a twisted conformer, a solvent exchange process with methanol facilitated the reprecipitation of FA in its yellow folded conformation within the elastomer matrix. Confocal and scanning electron microscopy confirmed the incorporation of FA in its folded form within the matrix, while film stretching testing and water resistance analyses highlighted the film's durability. The film exhibited a reversible color change upon mechanical pressure, reverting back to yellow when treated with methanol. This approach presents a promising method for the integration of FA into elastomer films, with potential applications in flexible mechanical sensors and other responsive materials.
一种包含呈折叠构象的芴叉吖啶(FA)的压敏弹性体薄膜已成功开发出来,用于压敏应用。弹性体网络用丙酮溶胀,创造出容纳FA分子的空间。尽管FA溶解在丙酮中并采用扭曲构象,但与甲醇的溶剂交换过程促进了FA在弹性体基质中以其黄色折叠构象再沉淀。共聚焦显微镜和扫描电子显微镜证实FA以其折叠形式掺入基质中,而薄膜拉伸测试和耐水性分析突出了薄膜的耐久性。该薄膜在机械压力下呈现可逆的颜色变化,用甲醇处理后恢复为黄色。这种方法为将FA整合到弹性体薄膜中提供了一种有前景的方法,在柔性机械传感器和其他响应材料中具有潜在应用。