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Investigation on the mechanism of charge generation in organic heterojunctions: Analysis of I-V and C-V characteristics

机译:有机杂交中电荷产生机制的研究:I-V和C-V特征分析

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摘要

The charge generation mechanism of organic heterojunction (OHJ) consisted of 1,4,5,8,9,11-hexaazatripheny-lene-hexacarbonitrile (HAT-CN) and different hole transporting materials (HTMs) are studied systematically by current-voltage (I-V) and capacitance-voltage measurements. The analysis of I-V characteristics of the devices based on OHJs at forward and reverse voltages by comparing the thickness of HTM layers finds that a forward and reverse symmetrical I-V curve is observed at thin HTM layers and the forward current becomes larger than the reverse current with the increase of HTM thickness, fully illustrating the effectiveness of OHJ charge generation. Moreover, the I-V characteristics at different temperatures indicate that the efficient charge generation is originated from electron tunneling rather than diffusion. And the C-V and capacitance-frequency (C-F)char-acteristics further illustrate the highly efficient charge generation ability of OHJs so that the charge density is as high as 4.5 ×10~(17) cm~(-3), guaranteeing the high conductivity of OHJs, which is very beneficial to developing highly efficient OLEDs using OHJs as charge injector and generator.
机译:有机异质结(OHJ)的电荷产生机制由1,4,5,8,9,11-己唑氮腈(HAT-CN)和不同的空穴传输材料(HTM)通过电流 - 电压( iv)和电容电压测量。通过比较HTM层的厚度的基于OHJS的基于OHJS的装置的IV特性分析,通过比较HTM层的厚度发现,在薄的HTM层中观察到正向和反向对称的IV曲线,并且前电电流变大于反向电流HTM厚度的增加,完全说明了OHJ充电产生的有效性。此外,不同温度下的I-V特性表明有效电荷产生源自电子隧道而不是扩散。并且CV和电容频率(CF)Char-acterstics进一步说明了OHJS的高效电荷发电能力,使得电荷密度高达4.5×10〜(17)cm〜(-3),保证高导电性OHJS,这对于使用OHJS作为电荷注射器和发电机开发高效OLED非常有益。

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  • 来源
    《Organic Electronics》 |2021年第1期|105979.1-105979.8|共8页
  • 作者单位

    Institute of Polymer Optoelectronic Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 People's Republic of China;

    Institute of Polymer Optoelectronic Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 People's Republic of China;

    Key Laboratory of Functional Inorganic Material Chemistry Ministry of Education School of Chemistry and Material Science Heilongjiang University 74 Xuefu Road Harbin 150080 People's Republic of China;

    Institute of Polymer Optoelectronic Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 People's Republic of China;

    Institute of Polymer Optoelectronic Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 People's Republic of China;

    Institute of Polymer Optoelectronic Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 People's Republic of China;

    Institute of Polymer Optoelectronic Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 People's Republic of China;

    Institute of Polymer Optoelectronic Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Organic heterojunction; Charge generation; Charge tunneling; I-V characteristic;

    机译:有机异质结;收费一代;电荷隧道;I-V特征;

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