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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Femtosecond laser ablated pyramidal fiber taper-SERS probe with laser-induced silver nanostructures
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Femtosecond laser ablated pyramidal fiber taper-SERS probe with laser-induced silver nanostructures

机译:Femtosecond激光烧蚀金字塔纤维锥体SERS探针诱导的银纳米结构

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摘要

A highly sensitive pyramid-shaped SERS fiber probe (P-Probe) has been first realized by a fabrication method-femtosecond (fs) laser ablation. Using the laser-induced deposition method, silver nanostructures are grown on the pyramidal fiber with the controlled cover density by an inline power meter in real time. A reduction power ratio, the ratio of power after induction to the power before induction, is introduced to optimize the laser reduction. The P-Probe performances with different reduction power ratios show that, the induction power ratio 60% is the optimized value for the enhancement of SERS signal. The sensitivity of the fiber SERS probe is down to 10(-9) M with Rhodamine 6G being target molecules. The proposed pyramid-shaped SERS fiber probe can be an alternative tool to detect the biomolecules of a single cell in biology sensing applications.
机译:通过制造方法 - 飞秒(FS)激光消融首先实现了高度敏感的金字塔形SERS纤维探针(P探针)。 使用激光诱导的沉积方法,银纳米结构在金字塔纤维上生长,并实时地通过内联的电力计受到控制的盖密度。 引入了减少功率比,引入在感应前对电力后的电力比率,以优化激光减少。 具有不同减少功率比的P探针性能表明,感应功率比60%是用于增强SERS信号的优化值。 纤维SERs探针的敏感性降至10(-9)m,罗丹明6g是靶分子。 所提出的金字塔形SERS纤维探针可以是检测生物传感应用中单个电池的生物分子的替代工具。

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