Liu Wenzhao, Li Letian, Liu Bing, Liu Rong, Zhang Guannan, Wu Zhaoyang
State Key Laboratory of Chemo/Bio-sensing and Chemo-metrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, People's Republic of China.
State Key Laboratory of Chemo/Bio-sensing and Chemo-metrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, People's Republic of China.
J Colloid Interface Sci. 2021 Dec;603:834-843. doi: 10.1016/j.jcis.2021.06.115. Epub 2021 Jun 30.
Photonic crystals film that possesses periodic dielectric structure have shown great prospect in developing environmentally friendly paper alternatives due to the unique properties of dye free and non-photobleaching, but their practical application is limited by the weak interaction between colloidal particles. Although some progress has been obtained, it is still a challenge to develop photonic paper with the desired mechanical and optical properties. Herein, multifunctional hard core/soft shell nanoparticles with controlled size are fabricated by semi-continuous seed emulsion polymerization method. Compared with convention colloidal particles, these core/shell nanoparticles can facile self-assemble into large-scale dense ordered structure film via dried at room temperature due to the relatively low glass transition temperature (Tg) of the shell layers. The facile fabrication route enables the continuous high-through put production of the photonic papers. The as-formed papers not only possess the capacity to solvent (water/ethanol) rewritable and multicolor painting, but also can rapidly reversible mechanochromic. Moreover, due to the good compatibility of core/shell interface, these photonic films possess excellent mechanical properties, demonstrating that this multifunctional film makes the fabrication of novel robust rewritable papers possible and enables visual monitoring of deformation degree.
具有周期性介电结构的光子晶体薄膜,因其无染料和不发生光漂白的独特性能,在开发环保型纸张替代品方面展现出了巨大的前景,但其实际应用受到胶体颗粒间弱相互作用的限制。尽管已取得了一些进展,但开发具有所需机械和光学性能的光子纸仍是一项挑战。在此,通过半连续种子乳液聚合法制备了尺寸可控的多功能硬核/软壳纳米粒子。与传统胶体颗粒相比,由于壳层相对较低的玻璃化转变温度(Tg),这些核/壳纳米粒子在室温下干燥时能够轻松自组装成大规模致密有序结构的薄膜。这种简便的制备路线使得光子纸能够连续高通量生产。所制备的纸张不仅具有溶剂(水/乙醇)可重写和多色绘画的能力,还具有快速可逆的机械变色性能。此外,由于核/壳界面具有良好的相容性,这些光子薄膜具有优异的机械性能,表明这种多功能薄膜使得制造新型坚固的可重写纸张成为可能,并能够对变形程度进行可视化监测。