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Journal Article Advances in terahertz biosensors toward photon-molecule interplay
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Authors
Yeeun Roh, Taeyeon Kim, Geon Lee, Minah Seo, Eui-Sang Yu
Issue Date
2024-06
Citation
TrAC - Trends in Analytical Chemistry, v.175, pp.1-18
ISSN
0165-9936
Publisher
Elsevier BV
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1016/j.trac.2024.117715
Abstract
To comprehend biological processes for healthcare, environmental, food, and security applications, establishing sensitive, reliable, and rapid techniques for detecting biomolecular substances is essential. However, conventional labeling methods suffer from reliability and reproducibility issues because they influence the experimental outcomes. Therefore, a label-free biomolecular sensing technique is required to overcome these limitations. From this perspective, terahertz label-free biomolecular sensing techniques have attracted significant attention owing to their unique characteristics of low photon energy and ability to probe overall dielectric responses and low-frequency vibrational modes from intermolecular interactions. In this review, we first present the distinctive characteristics of terahertz waves for detecting molecules and biological samples through a comparison with conventional biomolecular sensing techniques and vibrational spectroscopy. Then, the challenges and opportunities in the latest technologies of metasurface-based terahertz biomolecular detection are introduced, spanning from conventional strategies for enhanced terahertz absorption cross-sections to emerging frontiers exploring terahertz chirality and strongly coupled polaritons.
KSP Keywords
Absorption cross-section, Biological processes, Biological sample, Intermolecular interactions, Label-free, Latest technologies, Low frequency, Sensing technique, Vibrational modes, biomolecular detection, biomolecular sensing
This work is distributed under the term of Creative Commons License (CCL)
(CC BY NC)
CC BY NC