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Enhanced photomultiplication of organic photodetectors via phosphorescent material incorporation

Authors
Wang, JianLiu, MingChen, JunSon, Jae HoonJeong, Sang YoungXiao, JingChen, LiangYang, KaixuanZhao, ZijinWoo, Han YoungZhang, XiaoliZhang, Fujun
Issue Date
9-12월-2021
Publisher
ROYAL SOC CHEMISTRY
Citation
JOURNAL OF MATERIALS CHEMISTRY C, v.9, no.47, pp.16918 - 16924
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MATERIALS CHEMISTRY C
Volume
9
Number
47
Start Page
16918
End Page
16924
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/135448
DOI
10.1039/d1tc04524e
ISSN
2050-7526
Abstract
Photomultiplication organic photodetectors (PM-OPDs) were successfully constructed with a planar structure of PBDB-T/ITIC-Br as the active layer sandwiched by electrodes. Some isolated electron traps near the top surface of PBDB-T will be formed because small content ITIC-Br will permeate into PBDB-T layer prepared by sequential spin-coating method. The PM-OPDs achieve an external quantum efficiency (EQE) of 260% at 360 nm under a -9 V bias. The phosphorescent material FIrpic was incorporated into the PBDB-T layer to adjust the PBDB-T molecular arrangement for enhancing the hole mobility in the active layer. The optimal PM-OPDs with PBDB-T : FIrpic (100 : 10, wt/wt) display an EQE value of 2500% at 360 nm under a -9 V bias. A linear dynamic range (LDR) of 137 dB and a specific detectivity (D*) of 4.2 x 10(12) Jones are also achieved in PM-OPDs with PBDB-T : FIrpic (100 : 10, wt/wt). Moreover, high-quality imaging with the PM-OPDs as photosensitive element was realized by utilizing imaging systems without current preamplifiers, indicating that the PM-OPDs have potential applications in imaging.
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