材料科学
表面等离子共振
光电子学
电极
光纤
信号(编程语言)
等离子体子
晶体管
光纤传感器
生物传感器
纳米技术
电压
纤维
化学
计算机科学
电气工程
电信
工程类
纳米颗粒
物理化学
复合材料
程序设计语言
作者
Roger Hasler,Marie-Helene Steger-Polt,Ciril Reiner‐Rozman,Stefan Fossati,Seungho Lee,Patrik Aspermair,Christoph Kleber,María Ibáñez,Jakub Dostálek,Wolfgang Knoll
标识
DOI:10.3389/fphy.2023.1202132
摘要
The use of multimodal readout mechanisms next to label-free real-time monitoring of biomolecular interactions can provide valuable insight into surface-based reaction mechanisms. To this end, the combination of an electrolyte-gated field-effect transistor (EG-FET) with a fiber optic-coupled surface plasmon resonance (FO-SPR) probe serving as gate electrode has been investigated to deconvolute surface mass and charge density variations associated to surface reactions. However, applying an electrochemical potential on such gold-coated FO-SPR gate electrodes can induce gradual morphological changes of the thin gold film, leading to an irreversible blue-shift of the SPR wavelength and a substantial signal drift. We show that mild annealing leads to optical and electronic signal stabilization (20-fold lower signal drift than as-sputtered fiber optic gates) and improved overall analytical performance characteristics. The thermal treatment prevents morphological changes of the thin gold-film occurring during operation, hence providing reliable and stable data immediately upon gate voltage application. Thus, the readout output of both transducing principles, the optical FO-SPR and electronic EG-FET, stays constant throughout the whole sensing time-window and the long-term effect of thermal treatment is also improved, providing stable signals even after 1 year of storage. Annealing should therefore be considered a necessary modification for applying fiber optic gate electrodes in real-time multimodal investigations of surface reactions at the solid-liquid interface.
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