Terahertz Biochemical Molecule-Specific Sensors

Authors
Seo, MinahPark, Hyeong-Ryeol
Issue Date
2020-02
Publisher
WILEY-V C H VERLAG GMBH
Citation
ADVANCED OPTICAL MATERIALS, v.8, no.3
Abstract
The terahertz (THz) spectrum is the focus of basic research in solid-state physics, chemistry, and materials science as well as applications in next-generation communications, far-infrared bolometer, bio/chemical-sensing, and medical imaging. This wavelength range is at the intersection between photonics and electronics, presenting tremendous opportunities to boost fundamental light-matter interactions enabled by plasmonic nanostructures, metamaterials, and inherent molecular vibrational modes, which occur on time scales of tens of femtoseconds to picoseconds. Recently, engineered metamaterials have presented unique platforms for sensing applications due to their ability to boost such light-matter interactions on the nanoscale and to their spectral selectivity in a wide range from the mid-infrared to the THz region. Their resonant response can be tuned to that of the intra- and intermolecular vibrational modes of target bio/chemical molecules. The emerging fields of highly sensitive and selective mid-infrared and THz spectroscopies based on metamaterials and plasmonic nanostructures are reviewed. Furthermore, practical applications of these next generation spectroscopic sensors are also discussed, where the sensor platforms will lead to a great impact in the advancement of ultrasmall-quantity detection of explosives, nondestructive inspection of hazardous materials, food safety, and conformational dynamics of biomolecules in their aqueous environment.
Keywords
ENHANCED INFRARED-ABSORPTION; SENSITIVE DETECTION; RAMAN-SCATTERING; ANTENNA-ARRAYS; SPECTROSCOPY; METAMATERIALS; MONOLAYERS; BAND; NANOPARTICLES; TRANSMISSION; ENHANCED INFRARED-ABSORPTION; SENSITIVE DETECTION; RAMAN-SCATTERING; ANTENNA-ARRAYS; SPECTROSCOPY; METAMATERIALS; MONOLAYERS; BAND; NANOPARTICLES; TRANSMISSION; biochemical sensors; chemical identification; infrared spectroscopy; metamaterials; nanostructures; terahertz spectroscopy
ISSN
2195-1071
URI
https://pubs.kist.re.kr/handle/201004/119042
DOI
10.1002/adom.201900662
Appears in Collections:
KIST Article > 2020
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