酞菁类化合物在有机光电探测领域的研究进展
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O472+.8

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国家自然科学基金项目、陕西省自然科学基础研究计划


Recent progress of phthalocyanines in organic photodetectors
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The National Natural Science Foundation of China

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    摘要:

    有机光电探测器因其探测波长的可调谐性、低成本制造、易与柔性/轻质器件兼容等优点,在图像显示、光学通信、生物传感等前沿科技领域备受关注。酞菁类化合物由于具有窄而可调的光学带隙、优异的物理化学稳定性、较高的光生载流子效率等优点在有机光电探测器核心功能层—光活性层中极具应用潜力,成为近年来被重点研究的一类光敏材料。本文介绍了酞菁类化合物的结构、性质和分类,简述了光电探测器的探测原理、器件基本结构和光电特性参数,重点回顾并分析了不同类型酞菁化合物在有机光电探测器光活性层的制备、探测波长的调节、器件功能的整体优化等方面的研究进展和影响因素,总结并展望了酞菁类化合物在有机光电探测领域未来的发展方向。

    Abstract:

    Organic photodetectors have attracted much attention in frontier science and technology fields such as image display, optical communication, and biosensing due to their tunable detection wavelength, low-cost fabrication, and easy compatibility with flexible/lightweight devices. The photoactive layer is the core functional layer for organic photodetectors. As an important class of photosensitive materials, Phthalocyanine compounds have great potential for application in the photoactive layer because of the narrow and tunable optical bandgap, excellent physicochemical stability, and high photogenerated carrier efficiency. In this review, the structure, properties, and classification of phthalocyanine compounds were first introduced. Then, the detection principle, basic structure, and photoelectric properties of photodetectors were briefly described. Further, the research progress and influencing factors of different types of phthalocyanine compounds in the preparation of photoactive layer, regulation of detection wavelength, and global optimization of device performance were comprehensively reviewed and analyzed. Lastly, the future development direction of phthalocyanines in the field of organic photodetectors was summarized and prospected.

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李小龙,王晨宇,颜嘉豪,库梦婷,马永宁,杨雨豪.酞菁类化合物在有机光电探测领域的研究进展[J].精细化工,2022,39(7):

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  • 收稿日期:2021-12-26
  • 最后修改日期:2022-02-07
  • 录用日期:2022-02-16
  • 在线发布日期: 2022-06-10
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