Cen Mengjia, Wang Jiawei, Liu Jianxun, He Huilin, Li Ke, Cai Wenfeng, Cao Tun, Liu Yan Jun
Department of Biomedical Engineering, Dalian University of Technology, Dalian, Liaoning, 116024, China.
Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, 518055, China.
Adv Mater. 2022 Sep;34(37):e2203956. doi: 10.1002/adma.202203956. Epub 2022 Aug 17.
Chiral metasurfaces can exhibit a strong circular dichroism, but it is limited by the complicated fabrication procedure and alignment errors. Here, a new type of self-aligned suspended chiral bilayer metasurface with only one-step electron beam lithography exposure is demonstrated. A significant optical chirality of 221° µm can be realized using suspended metasurfaces with a thickness of 100 nm. Furthermore, this study experimentally demonstrates that such a structure is capable of label-free discrimination of the chiral molecules at zeptomole level, exhibiting a much higher sensitivity (orders of magnitude) compared to the conventional circular dichroism spectroscopy. The fundamental principles for chiral sensing using molecules-metasurfaces interactions are explored. Benefiting from the giant chiroptical response, the proposed metadevice may offer promising applications for ultrathin circular polarizers, chiral molecular detectors, and asymmetry information processing.
手性超表面可以表现出很强的圆二色性,但受到复杂制造工艺和对准误差的限制。在此,展示了一种新型的仅通过一步电子束光刻曝光的自对准悬浮手性双层超表面。使用厚度为100nm的悬浮超表面可实现221°μm的显著光学手性。此外,本研究通过实验证明,这种结构能够在zeptomole水平上对手性分子进行无标记区分,与传统圆二色光谱相比,灵敏度高出许多(几个数量级)。探索了利用分子 - 超表面相互作用进行手性传感的基本原理。受益于巨大的手性光学响应,所提出的超器件可能在超薄圆偏振器、手性分子探测器和不对称信息处理方面具有广阔的应用前景。