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Photoelectrochemical studies of DNA-tagged biomolecules on Au and Au/Ni/Au multilayer nanowires

机译:Au和Au / Ni / Au多层纳米线上标记DNA的生物分子的光电化学研究

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摘要

The use of nanowires (NWs) for labeling, sensing, and sorting is the basis of detecting biomolecules attached on NWs by optical and magnetic properties. In spite of many advantages, the use of biomolecules-attached NWs sensing by photoelectrochemical (PEC) study is almost non-existent. In this article, the PEC study of dye-attached single-stranded DNA on Au NWs and Au-Ni-Au multilayer NWs prepared by pulse electrodeposition are investigated. Owing to quantum-quenching effect, the multilayer Au NWs exhibit low optical absorbance when compared with Au NWs. The tagged Au NWs show good fluorescence (emission) at 570 nm, indicating significant improvement in the reflectivity. Optimum results obtained for tagged Au NWs attached on functionalized carbon electrodes and its PEC behavior is also presented. A twofold enhancement in photocurrent is observed with an average dark current of 10 μA for Au NWs coated on functionalized sensing electrode. The importance of these PEC and optical studies provides an inexpensive and facile processing platform for Au NWs that may be suitable for biolabeling applications.
机译:使用纳米线(NW)进行标记,感测和分类是通过光学和磁学性质检测附着在NW上的生物分子的基础。尽管有许多优点,但几乎不存在通过光电化学(PEC)研究使用附着生物分子的NWs传感技术。本文研究了通过脉冲电沉积制备的Au NWs和Au-Ni-Au多层NWs上的染料附着单链DNA的PEC研究。由于量子猝灭效应,与金纳米线相比,多层金纳米线显示出​​低的光吸收率。标记的金纳米线在570 nm处显示出良好的荧光(发射),表明反射率显着提高。还提供了最佳结果,用于附着在功能化碳电极上的标记金纳米线及其PEC行为。对于涂在功能化传感电极上的金纳米线,光电流增加了两倍,平均暗电流为10μA。这些PEC和光学研究的重要性为Au NW提供了一种廉价且简便的处理平台,该平台可能适用于生物标记应用。

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