Organic Light-Emitting Physically Unclonable Functions

被引:73
作者
Kayaci, Nilgun [1 ,2 ]
Ozdemir, Resul [3 ]
Kalay, Mustafa [1 ,4 ]
Kiremitler, N. Burak [1 ,2 ]
Usta, Hakan [3 ]
Onses, M. Serdar [1 ,2 ,5 ]
机构
[1] Erciyes Univ, ERNAM Nanotechnol Res & Applicat Ctr, TR-38039 Kayseri, Turkey
[2] Erciyes Univ, Dept Mat Sci & Engn, TR-38039 Kayseri, Turkey
[3] Abdullah Gul Univ, Dept Nanotechnol Engn, TR-38080 Kayseri, Turkey
[4] Kayseri Univ, Dept Elect & Energy, TR-38039 Kayseri, Turkey
[5] Bilkent Univ, UNAM Inst Mat Sci & Nanotechnol, TR-06800 Ankara, Turkey
关键词
data encoding; dewetting; fluorescence; organic semiconductors; physically unclonable functions; HIGH-PERFORMANCE; SEMICONDUCTOR; AUTHENTICATION; TRANSISTORS; LABELS; STATE;
D O I
10.1002/adfm.202108675
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The development of novel physically unclonable functions (PUFs) is of growing interest and fluorescent organic semiconductors (f-OSCs) offer unique advantages of structural versatility, solution-processability, ease of processing, and great tuning ability of their physicochemical/optoelectronic/spectroscopic properties. The design and ambient atmosphere facile fabrication of a unique organic light-emitting physically unclonable function (OLE-PUF) based on a green-emissive fluorescent oligo(p-phenyleneethynylene) molecule is reported. The OLE-PUFs have been prepared by one-step, brief (5 min) thermal annealing of spin-coated nanoscopic films (approximate to 40 nm) at a modest temperature (170 degrees C), which results in efficient surface dewetting to form randomly positioned/sized hemispherical features with bright fluorescence. The random positioning of molecular domains generated the unclonable surface with excellent uniformity (0.50), uniqueness (0.49), and randomness (p > 0.01); whereas the distinctive photophysical and structural properties of the molecule created the additional security layers (fluorescence profile, excited-state decay dynamics, Raman mapping/spectrum, and infrared spectrum) for multiplex encoding. The OLE-PUFs on substrates of varying chemical structures, surface energies and flexibility, and direct deposition on goods via drop-casting are demonstrated. The OLE-PUFs immersed in water, exposed to mechanical abrasion, and read-out repeatedly via fluorescence imaging showed great stability. These findings clearly demonstrate that rationally engineered solution-processable f-OSCs have a great potential to become a key player in the development of new-generation PUFs.
引用
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页数:11
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