Key Laboratory of In-Fiber Integrated Optics, Ministry of Education, Harbin Engineering University, Harbin 150001, P. R. China.
Key Laboratory of Photonic Materials and Device Physics for Oceanic Applications, Ministry of Industry and Information Technology of China, Harbin Engineering University, Harbin 150001, P. R. China.
ACS Sens. 2023 Nov 24;8(11):4171-4178. doi: 10.1021/acssensors.3c01414. Epub 2023 Oct 20.
Respiration is essential for supporting human body functions. However, a biocompatible fiber respiration sensor has rarely been discussed. In this study, we propose a wearable fiber surface plasmon resonance (SPR) respiration sensor using a LiBr-doped silk fibroin (SF) film. The SPR sensor monitors respiration by responding to airway humidity variation during inhalation and exhalation. We fabricated the SPR respiration sensor by depositing the core of a plastic-clad optical fiber with a gold film and an SF-LiBr composite film. The SF-LiBr composite film can absorb water through the interaction between water molecules and hydrogen bonds linking fibroin chains. Thus, humidity variation can change the SF-LiBr composite film's refractive index (RI), altering the phase-matching condition of the surface plasmon polaritons and shifting the SPR spectral dip. In experiments, we test the effect of the LiBr doping ratio on humidity response and confirm that the SF-22.1 wt % LiBr sensor has balanced performances. The SF-22.1 wt % LiBr sensor has a broad sensing range of 35-99% relative humidity (RH), a reasonable overall sensitivity of -6.5 nm/% RH, a fast response time of 135 ms, a quick recovery time of 150 ms, good reversibility, and good repeatability, which is capable of tracking different respiration states and patterns. Finally, we encapsulate this sensor in a conventional nasal oxygen cannula for wearable respiration monitoring, proving that the sensor is suitable for high-sensitivity, real-time, and accurate respiration monitoring.
呼吸对于支持人体功能至关重要。然而,很少有研究涉及生物相容性纤维呼吸传感器。本研究提出了一种使用 LiBr 掺杂丝素蛋白(SF)膜的可穿戴纤维表面等离子体共振(SPR)呼吸传感器。该 SPR 传感器通过响应吸入和呼出过程中气道湿度的变化来监测呼吸。我们通过在塑料包层光纤的芯上沉积金膜和 SF-LiBr 复合膜来制造 SPR 呼吸传感器。SF-LiBr 复合膜可以通过水分子与连接丝素链的氢键之间的相互作用来吸收水分。因此,湿度变化会改变 SF-LiBr 复合膜的折射率(RI),改变表面等离子体激元的相匹配条件,并改变 SPR 光谱的陷波。在实验中,我们测试了 LiBr 掺杂比对湿度响应的影响,并证实 SF-22.1wt%LiBr 传感器具有平衡的性能。SF-22.1wt%LiBr 传感器具有 35-99%相对湿度(RH)的宽感测范围、-6.5nm/%RH 的合理整体灵敏度、135ms 的快速响应时间、150ms 的快速恢复时间、良好的可逆性和良好的重复性,能够跟踪不同的呼吸状态和模式。最后,我们将该传感器封装在常规的鼻氧管中进行可穿戴呼吸监测,证明该传感器适用于高灵敏度、实时和准确的呼吸监测。