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Physical Unclonable Functions Employing Circularly Polarized Light Emission from Nematic Liquid Crystal Ordering Directed by Helical Nanofilaments

Title
Physical Unclonable Functions Employing Circularly Polarized Light Emission from Nematic Liquid Crystal Ordering Directed by Helical Nanofilaments
Authors
ChoiYong-JunMoonTae-WoongKimSeunghyunChoSeungwooKangHaeunDong HaJongwookSuk-WonJae-JinParkJun-SungLee
Ewha Authors
김동하
SCOPUS Author ID
김동하scopus
Issue Date
2024
Journal Title
ACS Applied Materials and Interfaces
ISSN
1944-8244JCR Link
Citation
ACS Applied Materials and Interfaces vol. 16, no. 6, pp. 7875 - 7882
Keywords
chiralitycircularly polarized light emissionhelical nanofilamentsliquid crystalsphysical unclonable functions
Publisher
American Chemical Society
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
This study proposes the use of physical unclonable functions employing circularly polarized light emission (CPLE) from nematic liquid crystal (NLC) ordering directed by helical nanofilaments in a mixed system composed of a calamitic NLC mixture and a bent-core molecule. To achieve this, an intrinsically nonemissive NLC is blended with a high concentration of a luminescent rod-like dye, which is miscible up to 10 wt % in the calamitic NLC without a significant decrease in the degree of alignment. The luminescence dissymmetry factor of CPLEs in the mixed system strongly depends on the degree of alignment of the dye-doped NLCs. Furthermore, the mixed system prepared in this study exhibits two randomly generated chiral domains with CPLEs of opposite signs. These chiral domains are characterized not only by their CPLE performances but also by their ability to generate random patterns up to several millimeters, making them promising candidates for high-performance secure authentication applications. © 2024 American Chemical Society
DOI
10.1021/acsami.3c17682
Appears in Collections:
자연과학대학 > 화학·나노과학전공 > Journal papers
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