Logo image
Sensitivity Enhancement and Probiotic Detection of Microfluidic Chips Based on Terahertz Radiation Combined with Metamaterial Technology
期刊文章   開放取用(OA)

Sensitivity Enhancement and Probiotic Detection of Microfluidic Chips Based on Terahertz Radiation Combined with Metamaterial Technology

Yen-Shuo Lin, Shih-Ting Huang, Shen-Fu Steve Hsu, Kai-Yuan Tang, Ta-Jen YenDa-Jeng Yao
Micromachines, 卷.13(6), 904
06/2022

摘要

metamaterials microfluidics probiotic sensitivity enhancement terahertz Control and Systems Engineering Mechanical Engineering Electrical and Electronic Engineering
Terahertz (THz) radiation has attracted wide attention in recent years due to its non-destructive properties and ability to sense molecular structures. In applications combining terahertz radiation with metamaterial technology, the interaction between the terahertz radiation and the metamaterials causes resonance reactions; different analytes have different resonance performances in the frequency domain. In addition, a microfluidic system is able to provide low volume reagents for detection, reduce noise from the environment, and concentrate the sample on the detection area. Through simulation, a cruciform metamaterial pattern was designed; the proportion, periodicity, and width of the metamaterial were adjusted to improve the sensing capability of the chip. In the experiments, the sensing capabilities of Type A, B, and C chips were compared. The Type C chip had the most significant resonant effect; its maximum shift could be increased to 89 GHz. In the probiotic experiment, the cruciform chip could have a 0.72 GHz shift at a concentration of 0.025 mg/50 µL, confirming that terahertz radiation combined with a metamaterial microfluidic chip can perform low-concentration detection.

檔案與連結 (1)

url
https://doi.org/10.3390/mi13060904檢視
已出版(紀錄版本) 開放

相關連結

指標

1 檢視次數

詳細資料

Logo image