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首页> 外文期刊>Journal of materials science >Broadband organic color photodetectors with high gain based on C_(60)-doped tri-phase bulk heterojunction
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Broadband organic color photodetectors with high gain based on C_(60)-doped tri-phase bulk heterojunction

机译:基于C_(60)的高增益的宽带有机彩色光电探测器 - 拆卸三相散装异质结

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摘要

We experimentally investigate the spectrum broadening of P3HT:PC_(61)BM:PBDT-TT-F tri-phase bulk heterojunction active layer, and the influence of material mixing degree on the optoelectronic performance of detectors is also discussed. In addition, the mechanism of gain for C_(60)-doped P3HT:PC_(61)BM:PBDT-TT-F detectors is studied. On the basis, we obtain a broadband with responsive spectra from 350 - 750 nm and photomultiplication (PM) detector. The resulting detector exhibits responsivity of 2.1, 3.95, 5.05 AAV and the external quantum efficiency of 415%, 924%, and 1361%, respectively, under the illumination of three primary light at -4 Ⅴ bias. Moreover, the specific detectivity approaches or exceeds 10~(12) Jones. The results indicates that the absorption spectrum of active layer can be used to broaden by adding small amount of spectrum broadening material while keeping the original morphology of binary bulk heterojunction. A small weight of C_(60) dispersed in tri-phase bulk heterojunction active layer can be regarded as electron trap. Combining the advantage of high exciton dissociation efficiency of bulk heterojunction, PM-type organic photodetectors working at low bias can be achieved by triggering hole tunneling injection from cathode.
机译:我们通过实验研究了P3HT的光谱扩展:PC_(61)BM:PBDT-TT-F三相散装异质结,并且还讨论了材料混合程度对检测器的光电性能的影响。此外,研究了C_(60)的增益机制 - 拆定了P3HT:PC_(61)BM:PBDT-TT-F检测器。在此基础上,我们获得了350-750nm和PhotoMutlipation(PM)检测器的响应光谱的宽带。所得探测器的响应性为2.1,3.95,5.05AAV和外部量子效率,分别为-4‰偏压的三个初级光照射下的415%,924%和1361%。此外,特定探测方法或超过10〜(12)琼。结果表明,活性层​​的吸收光谱可用于通过增加少量光谱展现材料而拓宽,同时保持二元散装异质结的原始形态。分散在三相体杂交有源层中的少量C_(60)可以被视为电子阱。结合了大量异质结的高激子解离效率的优点,通过从阴极触发孔隧穿注入来实现在低偏压下工作的PM型有机光电探测器。

著录项

  • 来源
    《Journal of materials science》 |2020年第4期|2757-2765|共9页
  • 作者

    Tao An; Xinying Liu;

  • 作者单位

    Department of Electronic Engineering Xi'an University of Technology Xi'an 710048 China;

    Department of Electronic Engineering Xi'an University of Technology Xi'an 710048 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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