4.6 Article

High-Performance Inverted Structure Broadband Photodetector Based on ZnO Nanorods/PCDTBT:PCBM:PbS QDs

Journal

IEEE TRANSACTIONS ON ELECTRON DEVICES
Volume 67, Issue 11, Pages 4970-4976

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TED.2020.3026984

Keywords

External quantum efficiency (EQE); PbS quantum dots (QDs); poly-[N-9 ''-heptadecanyl-2.7-carbazole-alt-5.5-(4',7'-di-2-thienyl-2',1',3-benzothiadia zole)] (PCDTBT):[6,6]-phenyl C-61 butyric acid methyl ester (PCBM) composite; responsivity; ZnO nanorods cathode buffer layer

Funding

  1. Science and Engineering Research Board through the Department of Science and Technology, Government of India [R&D/SERB/ECE/17-18/03]

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This article reports the performance improvement of a broadband photodetector using penetrating ZnO nanorods arrays (NRAs)-based electron transport layer (ETL) into a nanocomposite active layer of poly-[N-9 ''-heptadecanyl-2.7-carbazole-alt-5.5-(4 ',7 '-di-2-thienyl-2 ',1 ',3 -benzothiadia zole)] (PCDTBT):[6,6]-phenyl C-61 butyric acid methyl ester (PCBM), and PbS quantum dots (QDs) grown on an fluorine-doped tin oxide (FTO)-coated glass substrate. A thin layer of MoOx on the active layer was used as the hole transport layer (HTL) of the proposed photodetector. The device showed a high responsivity of similar to 213.77, similar to 28.57, and similar to 7.22 A/W at three selected wavelengths in ultraviolet (380 nm), visible (550 nm), and near-infrared (860 nm) regions, respectively. High external quantum efficiency (EQE) ofmore than 1000% was measured for each selected wavelength at low -1.5 V external bias. The superior EQE in the proposed device was attributed to both the surface trap-induced carrier injection into the ZnO NRA and ultrafast exciton dissociation existing in the PCDTBT: PCBM system.

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