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The enhancement method of optical fiber biosensor based on surface plasmon resonance with cold plasma modification

机译:基于表面等离子体共振冷等离子体改性的光纤生物传感器增强方法

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摘要

Cold plasma modification on optical fiber biosensor based on surface plasmon resonance (SPR) is proposed to enhance the SPR effect on biosensing. A side-polished multimode fiber sensor based on surface plasmon resonance as the transducing element with a halogen light source is carried out for the measurement of the BSA for the sensitivity analysis. The comparison with detection surface was fabricated by binding chemically to self-assembly monolayer (SAM) of 11-mercaptoundecanoic acid (MUA) and cold plasma modification method on gold (Au) surface of optical fiber, and then was activated by EDC/NHS for BSA. The pretreatment of cold plasma modification using isopropanol (IPA) to deposited carboxyl group on side-polished surface of optical fiber biosensor, and there are easily to combine biomolecule by EDC/NHS modification. The results of the comparison between traditional surface modification and cold plasma modification with the measurement for 5 ng BSA is observed on OSA and shifted obviously in wavelength. The side-polished fiber sensor based on surface plasmon resonance can provide the SPR response on spectrum, and the IPA plasma treatment can increase the sensitivity of the SPR dip shifted with 10-40 nm under the l0min treatment time of the surface modification.
机译:提出了基于表面等离振子共振(SPR)的光纤生物传感器的冷等离子体修饰,以增强SPR对生物传感的影响。进行了基于表面等离振子共振的侧抛光多模光纤传感器作为带有卤素光源的换能元件,以测量BSA进行灵敏度分析。通过与11-巯基十一酸(MUA)的自组装单层(SAM)化学结合并在光纤的金(Au)表面上进行冷等离子体改性方法,与检测表面进行比较,然后通过EDC / NHS活化BSA。使用异丙醇(IPA)进行冷等离子体修饰的预处理,以使羧基沉积在光纤生物传感器的侧面抛光表面上,并且通过EDC / NHS修饰易于结合生物分子。在OSA上观察到传统表面改性和冷等离子体改性的5 ng BSA的比较结果,并且波长明显偏移。基于表面等离振子共振的侧面抛光光纤传感器可以提供光谱上的SPR响应,而IPA等离子体处理可以在表面改性的10分钟处理时间内提高SPR倾斜位移10-40 nm的灵敏度。

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