Key Laboratory of Grain Information Processing & Control, Ministry of Education, Henan University of Technology, Zhengzhou 450001, China.
Henan Provincial Key Laboratory of Grain Photoelectric Detection and Control, Zhengzhou 450001, China.
Int J Mol Sci. 2023 Jun 30;24(13):10936. doi: 10.3390/ijms241310936.
The frequency range of terahertz waves (THz waves) is between 0.1 and 10 THz and they have properties such as low energy, penetration, transients, and spectral fingerprints, which are especially sensitive to water. Terahertz, as a frontier technology, have great potential in interpreting the structure of water molecules and detecting biological water conditions, and the use of terahertz technology for water detection is currently frontier research, which is of great significance. Firstly, this paper introduces the theory of terahertz technology and summarizes the current terahertz systems used for water detection. Secondly, an overview of theoretical approaches, such as the relaxation model and effective medium theory related to water detection, the relationship between water molecular networks and terahertz spectra, and the research progress of the terahertz detection of water content and water distribution visualization, are elaborated. Finally, the challenge and outlook of applications related to the terahertz wave detection of water are discussed. The purpose of this paper is to explore the research domains on water and its related applications using terahertz technology, as well as provide a reference for innovative applications of terahertz technology in moisture detection.
太赫兹波(THz 波)的频率范围在 0.1 到 10 THz 之间,它们具有低能量、穿透性、瞬态性和光谱指纹等特性,对水特别敏感。太赫兹作为一项前沿技术,在解释水分子结构和检测生物水分条件方面具有巨大的潜力,太赫兹技术用于水检测目前是前沿研究,具有重要意义。本文首先介绍了太赫兹技术的理论,总结了目前用于水检测的太赫兹系统。其次,阐述了与水检测相关的理论方法,如弛豫模型和有效媒质理论、水分子网络与太赫兹光谱的关系、水含量的太赫兹检测和水分分布可视化的研究进展。最后,讨论了太赫兹波检测水的应用相关的挑战和展望。本文的目的是探索使用太赫兹技术对水及其相关应用的研究领域,为太赫兹技术在湿度检测中的创新应用提供参考。