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Ultra-sensitive fluorescence detection based on helical micro optical fiber

机译:基于螺旋微光纤的超灵敏荧光检测

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A simple fabrication method of helical micro optical fibers (HMOFs) with controllable diameters and pitches based on micro-Weissenberg effect is proposed in this Letter. Single fibers with minimum diameter and pitch of 5 μm and 15 μm were directly written by near-field electrospinning of molten poly(methyl methacrylate) (PMMA). The morphology and transmission characteristics of single PMMA HMOFs were experimentally measured. The results showed that HMOFs have periodic modulation effect on transmitted light and show its potential as a micro-displacement sensor. Then a fluorescence detection structure based on HMOF is proposed, where HMOF was used to incoming the excitation light and collecting fluorescence. Experimental results show that for the fluorescence sensing of R6G aqueous solution, the fluorescence collection efficiency of HMOF was 4 times that of the micro optical fibers of the same diameter.
机译:在这封信中提出了一种具有可控直径的螺旋微光纤(HMOFS)的简单制造方法,并基于Micro-Weissenberg效应的俯仰。通过熔融聚(甲基丙烯酸甲酯)(PMMA)的近场静电纺丝直接用最小直径和5μm和15μm的单纤维直接写入。实验测量单个PMMA HMOFS的形态和传输特性。结果表明,HMOFS对透射光具有周期性调制效应,并显示其作为微位移传感器的潜力。然后提出了一种基于HMOF的荧光检测结构,其中HMOF用于进入激发光并收集荧光。实验结果表明,对于R6G水溶液的荧光感测,HMOF的荧光收集效率为相同直径的微光纤的4倍。

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