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Terahertz biomedical imaging using a terahertz emitter based on InAs nanowires

Authors
 Dong Woo Park  ;  Young Bin Ji  ;  Ilgyu Choi  ;  Jeongwoo Hwang  ;  Jae Cheol Shin  ;  Jin Chul Cho  ;  Eui Su Lee  ;  Seung Jae Oh  ;  Siyun Noh  ;  Jaehyeok Shin  ;  Jin Soo Kim 
Citation
 NANOSCALE, Vol.17(12) : 7211-7217, 2025-03 
Journal Title
NANOSCALE
ISSN
 2040-3364 
Issue Date
2025-03
MeSH
Animals ; Brain Neoplasms / diagnosis ; Brain Neoplasms / pathology ; Indium* / chemistry ; Nanowires* / chemistry ; Rats ; Silicon / chemistry ; Swine ; Terahertz Imaging* / methods ; Terahertz Spectroscopy
Abstract
We demonstrate the potential of using InAs nanowires (NWs) on Si(111) substrates for terahertz (THz) imaging in biomedical diagnostics. The cost-effectiveness and high precision of InAs NWs are discussed in comparison with those of InAs substrates. Using THz time-domain spectroscopy, the peak-to-peak current signals of catalyst-free InAs NWs and the substrate were measured at 3.37 nA and 1.61 nA, respectively. The THz amplitude of the InAs NWs increased by 47.7% compared to InAs wafers, with a fill factor of 0.034. At frequencies of up to 0.25 THz, the THz amplitude of InAs NWs was higher than that of bulk InAs. The resolution of THz images of a slice of pork belly and rat brain tumour tissue acquired using the InAs NWs was similar to that obtained with the InAs substrates. This suggests that InAs NW-based THz devices on Si substrates, which allow for large-area and cost-effective fabrication, could be useful for biomedical diagnostics.
Full Text
https://pubs.rsc.org/en/content/articlelanding/2025/nr/d4nr05445h
DOI
10.1039/d4nr05445h
Appears in Collections:
1. College of Medicine (의과대학) > Research Institute (부설연구소) > 1. Journal Papers
Yonsei Authors
Oh, Seung Jae(오승재)
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/206082
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