Opt Lett. 2020 Feb 15;45(4):985-988. doi: 10.1364/OL.381085.
We demonstrate a plasmonic fiber tip for relative humidity (RH) detection by integrating a gold nanomembrane onto the end-face of a multimode optical fiber via a flexible and high-efficiency transfer method. Fast water condensation/evaporation is responsible for the high performance of the fiber tip in response to RH. A high sensitivity of 279 pm/%RH is obtained in the range of $ 11% \sim 92% {\rm RH} $11%∼92%RH. Taking advantage of the fast dynamics (response and recovery times of 156 ms and 277 ms), the plasmonic fiber tip offers an excellent detection capability to human breaths at varied frequencies and depths. The compact, easy-fabrication, and fast-dynamics plasmonic platform has versatile potential for practical applications, including environmental and healthcare monitoring, as well as biochemical sensing.
我们通过一种灵活高效的转移方法,将金纳米膜集成到多模光纤的端面上,展示了一种用于相对湿度(RH)检测的等离子体光纤尖端。快速的水凝结/蒸发是光纤尖端在响应 RH 时具有高性能的原因。在 $11%∼92%$RH 范围内,获得了 279 pm/%RH 的高灵敏度。利用快速动力学(响应和恢复时间分别为 156 ms 和 277 ms),等离子体光纤尖端在不同频率和深度的人类呼吸检测方面具有出色的检测能力。这种紧凑、易于制造且动力学快速的等离子体平台具有广泛的实际应用潜力,包括环境和医疗保健监测以及生化传感。