Department of Applied Chemistry, Faculty of Science and Technology, Keio University , 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.
ACS Appl Mater Interfaces. 2017 May 17;9(19):16546-16552. doi: 10.1021/acsami.7b03567. Epub 2017 May 3.
Organic layered materials have intercalation and dynamic properties. The dynamic properties are tuned by the intercalation of the guests. In general, however, it is not easy to achieve the homogeneous and thin coating of the layered materials on substrates with complex shapes because of the two-dimensional anisotropic structures. In the present work, the layered organic composites were homogeneously coated on a variety of substrates for application to practical devices. The metal-ion-intercalated layered polydiacetylene (PDA-M) with tunable stimuli-responsive color-change properties was coated on substrates, such as paper and cotton consisting of cellulose fibers. The homogeneous and thin coating of the precursor monomer crystal was achieved on the substrates through the controlled crystal growth. The intercalation and topochemical polymerization generated PDA-M on the substrates. The PDA-M-coated devices visualized temperature distribution of two-dimensional surface and three-dimensional space in real time.
有机层状材料具有插层和动态特性。通过客体的插层来调节动态特性。然而,由于二维各向异性结构,通常不容易在具有复杂形状的基底上实现层状材料的均匀和薄涂层。在本工作中,层状有机复合材料均匀地涂覆在各种基底上,以应用于实际器件。具有可调刺激响应颜色变化特性的金属离子插层聚二乙炔(PDA-M)涂覆在由纤维素纤维组成的基底上,如纸张和棉花。通过控制晶体生长,在基底上实现了前体单体晶体的均匀和薄涂层。插层和拓扑聚合在基底上生成 PDA-M。PDA-M 涂层器件实时可视化二维表面和三维空间的温度分布。