Song Inho, You Liyan, Chen Ke, Lee Won-June, Mei Jianguo
Department of Chemistry, Purdue University, West Lafayette, IN, 47907, USA.
Adv Mater. 2024 Jan;36(3):e2307057. doi: 10.1002/adma.202307057. Epub 2023 Nov 30.
The interaction between light and chiroptical polymers plays a crucial role in chiroptics, spintronics, and chiral-spin selectivity. Despite considerable successes in creating dissymmetric polymer films, the elucidation of chiroptical activities under electrochemical switching remains unexplored. Here homogeneous chiral electrochromics is reported using chiral assembly of conjugated polymers through a transient solidification process with molecular chiral templates. In their neutral state, the chiral electrochromic polymers directly produce a remarkably dissymmetric polarization-dependent transmittance. The circular dichroism (CD) and dissymmetric transmission can be tuned by adjusting the doping level of the electrochemically active polymer films. Under high levels of oxidation, the chiroptical activities are reversed with strong bleaching in the visible, leading to formation of monosignate CD spectra over the infrared region. The matching between circular polarization handedness and chirality of chiroptical polymers makes a distinct impact on optical contrast and color switching dynamics due to the flipped chiroptical activities through polymer redox reactions. The differential circularly polarized transmission in the chiral see-through display can make a well-resolved color change in human eyes, demonstrating proof-of-concept devices for 3D imaging and information encryption. This work serves as a foundation to develop advanced on-chip fabrication of circular polarization-multiplexed display in flexible and highly integrated platforms.
光与手性光学聚合物之间的相互作用在手性光学、自旋电子学和手性-自旋选择性方面起着至关重要的作用。尽管在制备不对称聚合物薄膜方面取得了相当大的成功,但电化学开关下的手性光学活性的阐明仍未得到探索。在此,通过分子手性模板的瞬态固化过程,利用共轭聚合物的手性组装报道了均相手性电致变色材料。在其中性状态下,手性电致变色聚合物直接产生显著的不对称偏振依赖性透射率。圆二色性(CD)和不对称透射可以通过调节电化学活性聚合物薄膜的掺杂水平来调节。在高氧化水平下,手性光学活性会反转,在可见光区域出现强烈的漂白现象,导致在红外区域形成单符号CD光谱。圆偏振手性与手性光学聚合物的手性之间的匹配,由于聚合物氧化还原反应导致手性光学活性翻转,对光学对比度和颜色切换动力学产生了显著影响。手性透明显示器中的差分圆偏振透射可以在人眼中产生清晰的颜色变化,展示了用于3D成像和信息加密的概念验证设备。这项工作为在灵活且高度集成的平台上开发先进的圆偏振多路复用显示器的片上制造奠定了基础。