El-Gohary Sherif H, Choi Munsik, Kim Young L, Byun Kyung Min
Department of Biomedical Engineering, Kyung Hee University, Yongin 17104, Korea.
Department of Computer Science and Engineering, Kyung Hee University, Yongin 17104, Korea.
Sensors (Basel). 2016 Sep 7;16(9):1442. doi: 10.3390/s16091442.
As surface plasmon resonance (SPR)-based biosensors are well translated into biological, chemical, environmental, and clinical fields, it is critical to further realize stable and sustainable systems, avoiding oxidation susceptibility of metal films-in particular, silver substrates. We report an enhanced SPR detection performance by incorporating a TiO₂ layer on top of a thin silver film. A uniform TiO₂ film fabricated by electron beam evaporation at room temperature is an effective alternative in bypassing oxidation of a silver film. Based on our finding that the sensor sensitivity is strongly correlated with the slope of dispersion curves, SPR sensing results obtained by parylene film deposition shows that TiO₂/silver hybrid substrates provide notable sensitivity improvement compared to a conventional bare silver film, which confirms the possibility of engineering the dispersion characteristic according to the incidence wavelength. The reported SPR structures with TiO₂ films enhance the sensitivity significantly in water and air environments and its overall qualitative trend in sensitivity improvement is consistent with numerical simulations. Thus, we expect that our approach can extend the applicability of TiO₂-mediated SPR biosensors to highly sensitive detection for biomolecular binding events of low concentrations, while serving a practical and reliable biosensing platform.
随着基于表面等离子体共振(SPR)的生物传感器在生物、化学、环境和临床领域得到广泛应用,进一步实现稳定且可持续的系统至关重要,尤其是要避免金属膜(特别是银基底)的氧化敏感性。我们报道了通过在薄银膜顶部引入TiO₂层来增强SPR检测性能。通过室温下电子束蒸发制备的均匀TiO₂膜是绕过银膜氧化的有效替代方法。基于我们发现传感器灵敏度与色散曲线斜率密切相关,聚对二甲苯膜沉积获得的SPR传感结果表明,与传统裸银膜相比,TiO₂/银混合基底提供了显著的灵敏度提升,这证实了根据入射波长设计色散特性的可能性。所报道的带有TiO₂膜的SPR结构在水和空气环境中显著提高了灵敏度,其灵敏度提升的总体定性趋势与数值模拟一致。因此,我们期望我们的方法能够将TiO₂介导的SPR生物传感器的适用性扩展到对低浓度生物分子结合事件的高灵敏度检测,同时提供一个实用且可靠的生物传感平台。