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Ultrasensitive electrospun fluorescent nanofibrous membrane for rapid visual colorimetric detection of H2O2

机译:超灵敏的电纺荧光纳米纤维膜,用于快速视觉比色检测H2O2

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摘要

We report herein a flexible fluorescent nanofibrous membrane (FNFM) prepared by decorating the gold nanocluster (AuNC) on electrospun polysulfone nanofibrous membrane for rapid visual colorimetric detection of H2O2. The provision of AuNC coupled to NFM has proven to be advantageous for facile and quick visualization of the obtained results, permitting instant, selective, and on-site detection. We strongly suggest that the fast response time is ascribed to the enhanced probabilities of interaction with AuNC located at the surface of NF. It has been observed that the color change from red to blue is dependent on the concentration, which is exclusively selective for hydrogen peroxide. The detection limit has been found to be 500 nM using confocal laser scanning microscope (CLSM), visually recognizable with good accuracy and stability. A systematic comparison was performed between the sensing performance of FNFM and AuNC solution. The underlying sensing mechanism is demonstrated using UV spectra, transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy (XPS). The corresponding disappearance of the characteristic emissions of gold nanoclusters and the emergence of a localized surface plasmon resonance (LSPR) band, stressing this unique characteristic of gold nanoparticles. Hence, it is evident that the conversion of nanoparticles from nanoclusters has taken place in the presence of H2O2. Our work here has paved a new path for the detection of bioanalytes, highlighting the merits of rapid readout, sensitivity, and user-friendliness. © 2015 Springer-Verlag Berlin Heidelberg.
机译:我们在此报告了一种柔性荧光纳米纤维膜(FNFM),该膜是通过在电纺聚砜纳米纤维膜上装饰金纳米簇(AuNC)制备的,用于快速视觉比色检测H2O2。事实证明,提供与NFM耦合的AuNC可以方便,快速地可视化所获得的结果,从而可以进行即时,选择性和现场检测。我们强烈建议将快速响应时间归因于与位于NF表面的AuNC相互作用的可能性增加。已经观察到,从红色到蓝色的颜色变化取决于浓度,该浓度仅对过氧化氢具有选择性。使用共聚焦激光扫描显微镜(CLSM)已发现检出限为500 nM,在视觉上可以识别,并具有良好的准确性和稳定性。在FNFM和AuNC解决方案的感测性能之间进行了系统的比较。使用UV光谱,透射电子显微镜(TEM)和X射线光电子能谱(XPS)证明了潜在的传感机制。金纳米团簇的特征发射的相应消失和局部表面等离振子共振(LSPR)带的出现,强调了金纳米颗粒的这一独特特征。因此,显而易见的是,在H 2 O 2的存在下发生了来自纳米团簇的纳米颗粒的转化。我们在这里的工作为生物分析物的检测开辟了一条新途径,强调了快速读取,灵敏度高和用户友好的优点。 ©2015 Springer-Verlag Berlin Heidelberg。

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