Park Jaehee, Kim Myeong In, Lee Ezgi Darici, Shin Cheol, Kim Hyeokjun, Kang Jinhyeon, Ahn Hyungju, Jung In Hwan
Department of Organic and Nano Engineering, and Human-Tech Convergence Program, Hanyang University, 222 Wangsimni-ro, Seongdong-gu, Seoul, 04763, Republic of Korea.
CLAP Co., Ltd., 1342, Seongnam-daero, Sujeong-gu, Seongnam-si, Gyeonggi-do, 13120, Republic of Korea.
Small. 2025 May;21(21):e2410797. doi: 10.1002/smll.202410797. Epub 2025 Apr 7.
Fingerprint-on-display (FoD) sensors utilizing organic photodetectors (OPDs) are nearing commercialization, making it crucial to develop novel conjugated polymers that can be used as the active layer for this technology. These polymers should meet several requirements in terms of patent rights, large-scale synthesis, and OPD performance. In this study, novel conjugated polymers containing electron-withdrawing building blocks, easily synthesized from a 2-aminothiazole-4-carboxylate Schiff base commonly used as a pharmaceutical intermediate, are developed for high-performance OPDs and FoD sensors. Through alkyl chain engineering of the synthesized polymers, the highest photocurrent density and the lowest dark current density values were achieved in the OPDs. This resulted in the best OPD performance with a promising responsivity of 0.42 A/W and specific detectivity of 2.6 × 10 Jones at -2 V under near-infrared irradiation (810 nm). In addition, they exhibited excellent performance with a rising response time of 3-4 µs, falling response time of 6-11 µs, and -3 dB cut-off frequency of 80-100 kHz. Finally, the OPD is integrated into an organic thin-film transistor array to build a FoD sensor with 80 × 80 µm pixels, resulting in the successful acquisition of a digital fingerprint image.
利用有机光电探测器(OPD)的屏下指纹(FoD)传感器正接近商业化,因此开发可作为该技术有源层的新型共轭聚合物至关重要。这些聚合物在专利权、大规模合成和OPD性能方面应满足多项要求。在本研究中,开发了一种新型共轭聚合物,其含有吸电子结构单元,由常用作药物中间体的2-氨基噻唑-4-羧酸酯席夫碱易于合成,用于高性能OPD和FoD传感器。通过对合成聚合物进行烷基链工程,在OPD中实现了最高的光电流密度和最低的暗电流密度值。这导致了最佳的OPD性能,在近红外照射(810 nm)下,在-2 V时具有0.42 A/W的响应度和2.6×10琼斯的比探测率。此外,它们表现出优异的性能,上升响应时间为3-4 μs,下降响应时间为6-11 μs,-3 dB截止频率为80-100 kHz。最后,将OPD集成到有机薄膜晶体管阵列中,构建了具有80×80μm像素的FoD传感器,成功获取了数字指纹图像。