Wijaya Theodorus Jonathan, Xiong Sixing, Sasaki Kosei, Kato Yutaro, Mori Kazuma, Koizumi Mari, Lee Sunghoon, Kobayashi Masaki, Zhou Yinhua, Fukuda Kenjiro, Yokota Tomoyuki, Someya Takao
Department of Electrical Engineering and Information Systems, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.
RIKEN Center for Emergent Matter Science (CEMS), 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.
Adv Mater. 2025 May;37(21):e2501951. doi: 10.1002/adma.202501951. Epub 2025 Mar 30.
Flexible organic photodiodes (OPDs) are used to detect light in system-scale demonstrations of skin-conformable devices. However, the detectivity of OPDs deteriorates under various environmental conditions, such as light irradiation, air exposure, and heating. This decrease in detectivity is observed in OPDs with a widely used sol-gel ZnO (ZnO SG) electron transport layer (ETL), where the dark current at the reverse bias increased by several orders of magnitude. In this study, a low dark current and stable detectivity with respect to the aforementioned external changes are achieved. The enhanced stability stems from the suppression of the increase in dark current realized by using a mixture of an organic polymer, polyethyleneimine (PEIE), and inorganic crystals (ZnO nanoparticles) to create a nanoparticle-based, Zn-chelated PEIE (PEI-Zn NP) as the ETL of the OPDs. The detectivities of OPDs with PEI-Zn NP are 89%, 84%, and 93% of their original values after light irradiation, air storage, and thermal heating, respectively. In contrast, their ZnO SG counterparts exhibited stabilities of only 9.9%, 55%, and 2.6%, respectively, in the same tests. Furthermore, the use of PEI-Zn NP ETL in ultraflexible OPDs is demonstrated by the maintained detectivity after 5000 cycles of device bending.
柔性有机光电二极管(OPD)用于皮肤贴合设备的系统级演示中检测光。然而,在各种环境条件下,如光照、空气暴露和加热,OPD的探测率会下降。在具有广泛使用的溶胶 - 凝胶ZnO(ZnO SG)电子传输层(ETL)的OPD中观察到这种探测率的下降,其中反向偏置下的暗电流增加了几个数量级。在本研究中,实现了相对于上述外部变化具有低暗电流和稳定的探测率。增强的稳定性源于通过使用有机聚合物聚乙烯亚胺(PEIE)和无机晶体(ZnO纳米颗粒)的混合物来抑制暗电流的增加,从而创建基于纳米颗粒的、锌螯合的PEIE(PEI-Zn NP)作为OPD的ETL。具有PEI-Zn NP的OPD在光照、空气储存和热加热后的探测率分别为其原始值的89%、84%和93%。相比之下,在相同测试中,其对应的ZnO SG的稳定性分别仅为9.9%、55%和2.6%。此外,通过在设备弯曲5000次循环后保持探测率,证明了PEI-Zn NP ETL在超柔性OPD中的应用。