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Development of a Novel Fiber Optic Sensor Combined with a Fluorescence Turn-on Probe for Cu (II) Detection

机译:新型光纤传感器的开发结合Cu(II)检测的荧光开启探针

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Existing staining-based methodology for the detection of metal ions is not well suited for real-time or in situ use. This is a significant problem, given that these ions can have a considerable impact on both human health and the environment. Thus, there is growing interest and need for simple, rapid and in-situ monitoring techniques for the purpose of detecting various target analytes (e.g. heavy metals), which is of a significant importance in many fields ranging from environmental monitoring to the study of intracellular processes. Among various sensors developed, optical fiber-optic sensors (FOS), based on fluorescence, are one class of sensors that address this goal [1]. Optical fibers are ideal for environmental sensing applications because of their ability to transmit optical signals to and from the sensing region without the use of free-space optics. In this work, we present, for the first time, a simple FOS incorporating novel fluorescence turn-on mechanism [2] that could detect Cu (II) as low as 10~(-4) M. Traditionally, fluorescence quenching or "turn-off" was used to detect Cu (II) [3]. In recent years, fluorescence "turn-on" emerges as a preferable tool. The developed fiber-optic sensor has two fiber leads and one probe head. One fiber lead includes 6 fibers for He-Ne laser excitation light delivery (e-fibers). Another fiber lead has one receiving fiber (r-fiber) connected to an Ocean Optics QE65000 scientific grade spectrometer, which is interrogated by a computer via USB connection. The SpectroSuite software is used to observe and to record all spectra. The probe head combines all fibers together to form a coaxial structure with the r-fiber placed in the center. The key component in the proposed fluorescent sensing system is a probe prepared by binding a receptor containing a zwitterionic chromophore (Ml), through noncovalent interactions, to the fluorescent polymer (PI) resulting in quenching its emission. The sensing mechanism involves the release of P1 (a fluorescent indicator) from its non-fluorescent indicator/receptor (PI/M1) pair upon exposure to Cu (II). The zwitterionic chromophore (Ml) was found to show high selectivity and sensitivity to Cu (II), making it an ideal receptor for the recognition of Cu (II) [4]. The optimum operating conditions and performance characteristics for the new sensor will be discussed.
机译:用于检测金属离子的现有染色方法并不适用于实时或原位使用。这是一个重要的问题,因为这些离子可以对人类健康和环境产生相当大的影响。因此,具有越来越感兴趣的,并且需要用于检测各种靶分析物(例如重金属)的简单,快速和原位监测技术,这在许多田地中的巨大重要性是从环境监测到细胞内的研究流程。在开发的各种传感器中,基于荧光的光纤 - 光学传感器(FOS)是一种解决这一目标的一类传感器[1]。光纤是环境感测应用的理想选择,因为它们能够在不使用自由空间光学器件的情况下将光信号传输到感测区域。在这项工作中,我们提出,对于第一次,一个简单的FOS结合新颖荧光接通机构[2],可能检测的Cu(II)低至10〜(-4)M.传统上,荧光猝灭或“转-off“用于检测Cu(II)[3]。近年来,荧光“开启”出现为优选的工具。开发的光纤传感器具有两个光纤引线和一个探头头。一个纤维铅包括用于HE-NE激光激发光输送(E-纤维)的6个纤维。另一根光纤引线具有连接到海洋光学QE65000科学等级光谱仪的一个接收光纤(R-FIBED),该级光谱仪通过USB连接被计算机询问。 SpectOSuite软件用于观察和记录所有光谱。探头将所有纤维组合在一起以形成具有放置在中心的R-纤维的同轴结构。所提出的荧光传感系统中的关键组分是通过将含有两性离子发色团(ML)的受体通过非共价相互作用的受体与荧光聚合物(PI)结合而制备的探针,从而导致淬火其排放。感测机制涉及在暴露于Cu(II)时从其非荧光指示剂/受体(PI / M1)对释放P1(荧光指示物)。发现两性离子发色团(ML)对Cu(II)表示高选择性和敏感性,使其成为识别Cu(II)的理想受体[4]。将讨论新传感器的最佳操作条件和性能特征。

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