Kim Sang Jun, Lee Jaemin, Bae Jong-Seong, Lee Jung Woo
Institute of Materials Technology, Pusan National University, Busan 46241, Republic of Korea.
Department of Materials Science and Engineering, Pusan National University, Busan 46241, Republic of Korea.
Nanomaterials (Basel). 2024 Jan 30;14(3):284. doi: 10.3390/nano14030284.
An accurate humidity measurement is essential in various industries, including product stability, pharmaceutical and food preservation, environmental control, and precise humidity management in experiments and industrial processes. Crafting effective humidity sensors through precise material selection is crucial for detecting minute humidity levels across various fields, ultimately enhancing productivity and maintaining product quality. Metal-organic frameworks (MOFs), particularly zeolitic imidazolate frameworks (ZIFs), exhibit remarkable properties and offer a wide range of applications in catalysis, sensing, and gas storage due to their structural stability, which resembles zeolites. The previous research on MOF-based humidity sensors have primarily used electrical resistance-based methods. Recently, however, interest has shifted to capacitive-based sensors using MOFs due to the need for humidity sensors at low humidity and the resulting high sensitivity. Nevertheless, further studies are required to optimize particle structure and size. This study analyzes ZIF-8, a stable MOF synthesized in varying particle sizes, to evaluate its performance as a humidity sensor. The structural, chemical, and sensing properties of synthesized ZIF-8 particles ranging from 50 to 200 nanometers were examined through electron microscopy, spectroscopic, and electrochemical analyses. The fabricated copper electrodes combined with these particles demonstrated stable and linear humidity sensing capabilities within the range of 3% to 30% relative humidity (RH).
精确的湿度测量在各个行业中至关重要,包括产品稳定性、药品和食品保存、环境控制以及实验和工业过程中的精确湿度管理。通过精确选择材料来制造有效的湿度传感器对于检测各个领域中的微小湿度水平至关重要,最终可提高生产率并保持产品质量。金属有机框架(MOF),特别是沸石咪唑酯框架(ZIF),由于其类似于沸石的结构稳定性,展现出卓越的性能,并在催化、传感和气体存储等方面有广泛应用。先前对基于MOF的湿度传感器的研究主要采用基于电阻的方法。然而,最近由于对低湿度环境下湿度传感器的需求以及由此产生的高灵敏度,人们的兴趣已转向使用MOF的电容式传感器。尽管如此,仍需要进一步研究来优化颗粒结构和尺寸。本研究分析了不同粒径合成的稳定MOF——ZIF-8,以评估其作为湿度传感器的性能。通过电子显微镜、光谱和电化学分析,研究了粒径在50至200纳米范围内合成的ZIF-8颗粒的结构、化学和传感特性。与这些颗粒结合制成的铜电极在3%至30%相对湿度(RH)范围内表现出稳定且线性的湿度传感能力。