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Optical microfibers decorated with PdAu nanoparticles for fast hydrogen sensing

机译:用PdAu纳米粒子修饰的光学微纤维可快速检测氢

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Optical microfibers decorated with PdAu nanoparticies are proposed for fast hydrogen sensing. The optical microfibers were fabricated by simply tapering conventional telecommunications fiber down to dimensions comparable to the wavelength of the guided light. The optical microfibers were then coated over a few millimeters with a PdAu layer in island form by depositing the layer at low deposition rate (0.1 A/s). Then the islands were grown with a thermal annealing process until composite nanoparticles were formed. The PdAu nanoparticles deposited on the optical microfibers experience optical and physical changes when they are exposed to hydrogen. This gives rise to reversible transmission changes with an unusual pulsed like behavior which is attributed to scattering of the guided light. The devices are promising for detecting low concentrations of hydrogen (up to &%) at room temperature with response and recovery times on the order of seconds, i.e., faster than many other hydrogen sensors that exploit phenomena at the nanoscale. The sensing of other gases is also feasible if the optical microfibers are decorated with suitable gas-permeable nanoparticles.
机译:提出了用PdAu纳米颗粒装饰的光学微纤维,用于快速氢感测。光学微纤维是通过简单地将常规的电信纤维逐渐缩小到与被引导光的波长可比的尺寸而制成的。然后通过以低沉积速率(0.1 A / s)沉积一层微晶纤维,以岛状形式的PdAu层覆盖几毫米。然后,通过热退火工艺使这些岛生长,直到形成复合纳米颗粒。沉积在光学微纤维上的PdAu纳米粒子在暴露于氢时会发生光学和物理变化。这引起了具有异常脉冲状行为的可逆传输变化,这归因于引导光的散射。该设备有望在室温下检测低浓度的氢(高达%),其响应和恢复时间仅为几秒钟,即比许多其他利用纳米级现象的氢传感器要快。如果光学微纤维装饰有合适的透气性纳米粒子,则其他气体的传感也是可行的。

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