Huang Xiangyu, Kaissner Robin, Renz Benjamin, Börner Janine, Ou Xiangnian, Neubrech Frank, Zhang Yaopeng, Hu Yueqiang, Liu Na
Second Physics Institute, University of Stuttgart, Pfaffenwaldring 57, 70569 Stuttgart, Germany.
Max Planck Institute for Solid State Research, Heisenbergstrasse 1, 70569 Stuttgart, Germany.
Nano Lett. 2025 Jan 15;25(2):890-897. doi: 10.1021/acs.nanolett.4c05856. Epub 2025 Jan 6.
Conducting polymers have emerged as promising active materials for metasurfaces due to their electrically tunable states and large refractive index modulation. However, existing approaches are often limited to infrared operation or single-polymer systems, restricting their versatility. In this Letter, we present organic metasurfaces featuring dual conducting polymers, polyaniline (PANI) and poly(3,4-ethylenedioxythiophene) (PEDOT), to achieve contrasting dynamic optical responses at visible frequencies. Sequential electrochemical polymerizations locally conjugate subwavelength-thin layers of PANI and PEDOT onto preselected gold nanorods, creating electro-plasmonic antennas with distinct optoelectronic properties. This dual-polymer approach enables dynamic metasurface pixel control without individual electrode routing, thereby simplifying active metasurface designs. The metasurfaces exhibit dual-channel functions, including anomalous transmission and holography, through the redox-state switching of both polymers. Our work underscores the potential of conducting polymers for active metasurface applications, offering a pathway to advanced reconfigurable optical devices at visible frequencies.
由于其电可调状态和大折射率调制,导电聚合物已成为超表面有前景的活性材料。然而,现有方法通常限于红外操作或单聚合物系统,限制了它们的通用性。在本信函中,我们展示了具有双导电聚合物——聚苯胺(PANI)和聚(3,4-乙撑二氧噻吩)(PEDOT)的有机超表面,以在可见光频率实现对比鲜明的动态光学响应。顺序电化学聚合将PANI和PEDOT的亚波长薄层局部共轭到预选的金纳米棒上,创建具有独特光电特性的电等离子体天线。这种双聚合物方法无需单独的电极布线即可实现动态超表面像素控制,从而简化了有源超表面设计。通过两种聚合物的氧化还原状态切换,超表面展现出双通道功能,包括异常透射和全息术。我们的工作强调了导电聚合物在有源超表面应用中的潜力,为可见光频率下的先进可重构光学器件提供了一条途径。