光电二极管
共轭体系
红外线的
材料科学
光电子学
阴极
光化学
化学
光学
聚合物
物理
物理化学
复合材料
作者
Yueyue Wang,Minming Yan,Shunyu Wang,Danni Chen,Qilin Zhang,Yi Su,Dongwen Zou,Meili Xu,Hong Chen,Hong Meng
标识
DOI:10.1002/anie.202514390
摘要
Abstract The cathode interface layers (CILs) play a crucial role in enhancing the performance of organic photodiodes (OPDs). However, the poor film formation, the tendency of orientation and aggregation, and contact in the interface of the bulk heterojunction (BHJ)/CILs/electrode increase the dark current, leading to a limitation of light detection. In this study, we designed and synthesized a nonfused conjugated small molecule (FNA) with dioctyl fluorene (F) as the π‐bridge and N ‐dimethylaminopropyl‐1,8‐naphthalimide (NA) as terminal groups. As the CIL, it significantly modifies the interfaces of BHJ/CILs/electrode and minimizes dark current density ( J d ). Using PTB7‐Th:IEICO‐4F as the BHJ, FNA‐based OPDs achieve a remarkably low J d of 1.12 × 10 −8 A cm −2 (at −0.5 V) and a peak specific detectivity of 8.23 × 10 12 Jones (940 nm), outperforming conventional devices with PDINN as CIL. These improvements are attributed to lower J d by modified interfacial contact and increased photoresponse by reducing depletion region width in FNA‐based photodiodes. Furthermore, uniform photoresponse in 5 × 5 OPD pixel arrays further validates its potential for imaging applications.
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