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Effective Strategy for High-Performance Organic Photodetectors with Significantly Suppressed Dark Current and Improved Responsivity

  • Shuai Zhang
  • , Tong Liu
  • , Jianxiao Wang
  • , Yongfu Li
  • , Guoqing Lin
  • , Maria Vasilopoulou
  • , Junhao Chu
  • , Qingbo Meng*
  • , Xichang Bao*
  • *此作品的通讯作者
  • CAS - Qingdao Institute of Biomass Energy and Bioprocess Technology
  • University of Chinese Academy of Sciences
  • Shandong Energy Institute
  • Qingdao New Energy Shandong Laboratory
  • Shandong University
  • Demokritos National Centre for Scientific Research
  • CAS - Shanghai Institute of Technical Physics
  • CAS - Institute of Physics

科研成果: 期刊稿件文章同行评审

摘要

Organic photodetectors (OPDs) have attracted immense interest as solution-processable optical signal-capturing devices due to their various advantages, such as adjustable response range, excellent weak light response, lightweight, flexibility, and ease of processing on diverse substrates. Low dark current density (Jd) and high responsivity (R) are key requirements necessary for achieving a high specific detectivity (D*). Here, an effective strategy for preparing high-performance OPDs with potential micro p-i-n structure by introducing insulating poly(aryl ether) (PAEN) into the organic photosensitive layer is reported. The PM6:PC71BM-based OPDs are capable of significantly suppressing Jd while increasing R, which can be attributed to the multiple optimizations of morphology and charge transport caused by the addition of PAEN. As a result, the value of Jd (3.63 × 10−10 A cm−2) is two orders of magnitude lower than that of the device without PAEN (1.00 × 10−8 A cm−2) at −1 V bias. Combined with the increased R of 0.376 A W−1, the optimized device achieves a high D*of 3.45 × 1013 Jones (−1 V at 620 nm). The optimized OPDs demonstrate high performance that is comparable to commercial Si photodetectors (Hamamatsu S1133), paving the way for the direct market development of this cost-effective organic photodetection technology.

源语言英语
文章编号2400328
期刊Advanced Optical Materials
12
19
DOI
出版状态已出版 - 5 7月 2024
已对外发布

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