Kim Nak-Hyeon, Choi Munsik, Kim Tae Woo, Choi Woong, Park Sang Yoon, Byun Kyung Min
Advanced Institutes of Convergence Technology, Seoul National University, Suwon 16229, Korea.
College of Electronics and Information, Dept. of Biomedical Engineering, Kyung Hee University, Yongin 17104, Korea.
Sensors (Basel). 2019 Apr 21;19(8):1894. doi: 10.3390/s19081894.
Surface plasmon resonance (SPR) sensors based on a silver film suffer from signal degradation due to silver oxidation in aqueous sensing environments. To overcome this limitation, we fabricated the planar plasmonic substrate employing an atomic MoS layer on a silver surface. Successful production of a large-area MoS monolayer blocks the penetration of oxygen and water molecules. In addition, we theoretically and experimentally found that MoS layer on the silver film can improve the SPR sensitivity and stability significantly. In this study, the proposed SPR substrate has the potential to provide highly enhanced sensor platforms for surface-limited molecular detections.
基于银膜的表面等离子体共振(SPR)传感器在水性传感环境中会因银氧化而导致信号退化。为克服这一限制,我们在银表面采用原子级的MoS层制造了平面等离子体基底。成功制备大面积的MoS单分子层可阻止氧分子和水分子的渗透。此外,我们通过理论和实验发现,银膜上的MoS层可显著提高SPR灵敏度和稳定性。在本研究中,所提出的SPR基底有潜力为表面受限分子检测提供高度增强的传感器平台。