Xu Feng, Ma Jun, Li Can, Ma Churong, Li Jie, Guan Bai-Ou, Chen Kai
Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Institute of Photonics Technology, Jinan University, Guangzhou 511443, China.
Molecules. 2023 Oct 9;28(19):6984. doi: 10.3390/molecules28196984.
Hydrogen (H) sensors are critical to various applications such as the situation where H is used as the clean energy for industry or the indicator for human disease diagnosis. Palladium (Pd) is widely used as the hydrogen sensing material in different types of sensors. Optical fiber H sensors are particularly promising due to their compactness and spark-free operation. Here, we report a Fabry-Pérot (FP)-cavity-based H sensor that is formed with a freestanding Pd membrane and integrated on a conventional single-mode optical fiber end. The freestanding Pd membrane acts both as the active hydrogen sensing material and as one of the reflective mirrors of the cavity. When the Pd film absorbs H to form PdH, it will be stretched, resulting in a change of the cavity length and thus a shift of the interference spectrum. The H concentration can be derived from the amplitude of the wavelength shift. Experimental results showed that H sensors based on suspended Pd membranes can achieve a detection sensitivity of about 3.6 pm/ppm and a detection limit of about 3.3 ppm. This highly sensitive detection scheme is expected to find applications for sensing low-concentration H.
氢(H)传感器对于各种应用至关重要,例如在氢被用作工业清洁能源的情况或作为人类疾病诊断指标的情况。钯(Pd)在不同类型的传感器中被广泛用作氢传感材料。光纤氢传感器因其紧凑性和无火花操作而特别有前景。在此,我们报道一种基于法布里 - 珀罗(FP)腔的氢传感器,它由独立的钯膜形成,并集成在传统单模光纤末端。独立的钯膜既作为活性氢传感材料,又作为腔的反射镜之一。当钯膜吸收氢形成氢化钯时,它会被拉伸,导致腔长度发生变化,从而使干涉光谱发生偏移。氢浓度可从波长偏移的幅度得出。实验结果表明,基于悬浮钯膜的氢传感器可实现约3.6 pm/ppm的检测灵敏度和约3.3 ppm的检测限。这种高灵敏度检测方案有望用于检测低浓度氢。