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Side-polished flexible SPR sensor modified by graphene with in situ temperature self-compensation

机译:石墨烯修饰的侧抛光柔性SPR传感器具有原位温度自补偿功能

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摘要

Fiber-based techniques make it possible to implant a miniaturized and flexible surface plasmon resonance (SPR) sensor into the human body. However, for implantable applications, the miniaturization of fiber SPR sensors results in low sensitivity compared with traditional prism-type SPR sensors due to limited space and the effects of temperature fluctuations. Therefore, it is necessary to compensate for temperature drift in the measurements, such as the case of the quantification of the relationship between glucose concentration and SPR resonance wavelength. In this report, we proposed a highly sensitive fiber SPR sensor based on a side-polished structure modified by graphene for implantable continuous glucose monitoring with in situ temperature self-compensation using a long-period fiber grating (LPFG). The results demonstrate that the sensor with monolayer graphene achieved the best sensitivity of 3058.22 nm/RIU, and the LPFG achieves a maximum resolution of 0.042 nm/°C. The proposed SPR sensor enabled the detection of hypoglycemia, which is still a significant challenge for continuous glucose monitoring in a clinical setting.
机译:基于纤维的技术使将小型且灵活的表面等离振子共振(SPR)传感器植入人体成为可能。然而,对于可植入的应用,由于空间有限和温度波动的影响,与传统的棱镜型SPR传感器相比,光纤SPR传感器的小型化导致灵敏度低。因此,有必要在测量中补偿温度漂移,例如量化葡萄糖浓度和SPR共振波长之间的关系的情况。在本报告中,我们提出了一种高灵敏度的光纤SPR传感器,该传感器基于石墨烯修饰的侧面抛光结构,用于使用长周期光纤光栅(LPFG)进行可植入的连续葡萄糖监测以及就地温度自补偿。结果表明,单层石墨烯传感器的最佳灵敏度为3058.22 nm / RIU,而LPFG的最大分辨率为0.042 nm /°C。提议的SPR传感器能够检测低血糖症,这对于在临床环境中连续进行葡萄糖监测仍然是一项重大挑战。

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