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Molecular Probes Based on Microstructured Fibers and Surface Enhanced Raman Scattering

机译:基于微结构纤维和表面增强拉曼散射的分子探针

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In recent years, there has been significant interest in using surface enhanced Raman scattering (SERS) and optical fibers for chemical, biological, and environmental detections. The combination of SERS and optical fibers offers the advantages of the molecular specificity of Raman scattering, huge enhancement factor of SERS, and flexibility of optical fibers. In this paper, we report our work on the development of fiber biosensors based on SERS emphasizing on recent progress in the fabrication of photonic crystal fiber (PCF) SERS sensors for highly sensitive molecular detection. To increase the sensitivity, one needs to increase either the excitation laser power or the amount of analyte molecules in the active region of the sensor. The high excitation intensity is not desirable for biosensors due to the low damage threshold of live tissues or bio-molecules. In our investigation of various fiber configurations, hollow core (HC) PCFs show the greatest advantages over all other types of fiber probes because of the large contact area. The hollow core nature allows the analytes and SERS substrate to fill the inner surface of the air channels. In addition, by sealing the cladding holes of the HCPCF, only the central hole will be open and filled with liquid samples. As both the light and the sample are confined in the fiber core, the sensitivity is significantly improved. The newly developed liquid core PCF sensor was tested in the detection of rhodamine 6G (R6G), human insulin, and tryptophan with good sensitivity due to the enhanced interaction volume.
机译:近年来,使用表面增强拉曼散射(SERS)和光纤进行化学,生物和环境检测引起了人们的极大兴趣。 SERS和光纤的结合具有拉曼散射的分子特异性,SERS的巨大增强因子和光纤柔韧性的优点。在本文中,我们报告了我们基于SERS的纤维生物传感器的开发工作,重点介绍了用于高灵敏度分子检测的光子晶体光纤(PCF)SERS传感器的制造方面的最新进展。为了增加灵敏度,需要增加激发激光功率或传感器有源区域中分析物分子的数量。由于活组织或生物分子的损伤阈值低,因此对于生物传感器而言,高激发强度是不希望的。在我们对各种光纤配置的研究中,由于接触面积大,空心PC(HC)PCF显示出优于所有其他类型光纤探头的最大优势。空心性质允许分析物和SERS底物填充空气通道的内表面。此外,通过密封HCPCF的包层孔,只有中心孔会敞开并充满液体样品。由于光和样品都被限制在纤维芯中,因此灵敏度大大提高。由于相互作用量的增加,新开发的液芯PCF传感器在检测若丹明6G(R6G),人胰岛素和色氨酸方面具有良好的灵敏度。

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