Moon Cheon Woo, Park Ji-Eun, Park Minkyeong, Kim Youngji, Narasimha Karnati, Hyun Jerome Kartham, Park So-Jung
Department of Chemistry and Nanoscience, Ewha Womans University, 52 Ewhayeodae-gil, Seodaemun-gu, Seoul 03760, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Jan 13;13(1):1555-1561. doi: 10.1021/acsami.0c19252. Epub 2020 Dec 28.
Colors responsive to the chemical environment can form the basis for simple and highly accessible diagnostic tools. Herein, the charge modulation of conjugated polymers is demonstrated as a new mechanism for chemically responsive structural colors based on thin-film interference. A liquid-liquid interfacial self-assembly is employed to create a conjugated block copolymer film that is flexible, transferable, and highly homogeneous in thickness over a large area. Gold (Au) complexes are introduced in the self-assembly process for oxidation of conjugated polymers into a hole-polaronic state that renders the polymer film responsive to the chemical environment. When transferred onto a reflective substrate, the film shows thickness-dependent tunable reflective colors due to the optical interference. Furthermore, it experiences drastic changes in its dielectric behavior upon switching of the polaronic state, thereby enabling large modulations to the interferometric colors. Such responsive thin-film colors, in turn, can be used as a simple and intuitive multicolor readout for the recognition of reductive vapors including biological decomposition products.
对化学环境有响应的颜色可构成简单且易于使用的诊断工具的基础。在此,共轭聚合物的电荷调制被证明是一种基于薄膜干涉的化学响应结构色的新机制。采用液 - 液界面自组装来制备共轭嵌段共聚物薄膜,该薄膜具有柔韧性、可转移性且在大面积上厚度高度均匀。在自组装过程中引入金(Au)配合物,用于将共轭聚合物氧化成空穴极化子状态,使聚合物薄膜对化学环境产生响应。当转移到反射基板上时,由于光学干涉,该薄膜呈现出与厚度相关的可调反射颜色。此外,在极化子状态切换时,其介电行为会发生剧烈变化,从而能够对干涉颜色进行大幅调制。反过来,这种响应性薄膜颜色可作为一种简单直观的多色读数,用于识别包括生物分解产物在内的还原性蒸汽。