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首页> 外文期刊>ECS Journal of Solid State Science and Technology >(066006)The Effect of the Interface Layer on the Electronic Parameters of the Light Emitting Electrochemical Cell (LEC) Device Based on Iridium (III) Complex that Calculated by Different Methods
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(066006)The Effect of the Interface Layer on the Electronic Parameters of the Light Emitting Electrochemical Cell (LEC) Device Based on Iridium (III) Complex that Calculated by Different Methods

机译:(066006)The Effect of the Interface Layer on the Electronic Parameters of the Light Emitting Electrochemical Cell (LEC) Device Based on Iridium (III) Complex that Calculated by Different Methods

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摘要

We report a calculation of the electronic parameters and some optical measurement results of a light-emitting electrochemical cell(LEC), one of the most basic forms of electroluminescent ?lms by modifying 4-(4-methoxy-N-naphthalen-1-ylanilino) benzoicacid (MA) as hole injection layer doped with an emissive layer that is ionic transition metal complex(IrdF(CF_3)ppy_2(dtbpy))PF6-(Ir-iTMC). The electronic parameters of LEC device were computed using three different methods;Cheung and Cheung’s, Conventional Schottky and Norde, to evaluate the ideality factor (n), the barrier height (?) and the seriesresistance (Rs) of the LEC device. The formation on indium tin oxide (ITO) substrate was analyzed by Atomic Force Microscopy(AFM). The HOMO-LUMO energy level and electronic charge distribution of the MA molecule were computed theoretically usingChemissian software. The MA’s HOMO-LUMO energy level is determined to be EHOMO = ?5.27 eV and E_(LUMO) = ?1.40 eV.The ITO surface has been modi?ed with the Self-Assembled Monolayers (SAM) technique as an interlayer to improve the surfaceworking function by simplifying hole injection from the ITO anode to the Hole Transport Layer (HTL) in the LEC. The Ir- iTMCcomplexes containing Π-conjugated bridging ligand shown better external quantum ef?ciency (EQE), reaching to 1.49. The maxluminance values of the bare-LEC and LEC-MA are measured as 145 cd m~(-2) and 1240 cd m~(-2), respectively.

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  • 作者单位

    Electric and Electronics Engineering, Photoelectronics Lab (PEL), Toros University, Mersin, Turkey;

    Renewable Energy Technologies, Education, Research and Application Center (YETAM), Toros University, Mersin, Turkey;

    Department of Chemistry, College of Science, Taif University, Al-Haweiah, PO Box 11099, Taif 21944, Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 电化学工业;
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