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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Solution-processed, fullerene-free organic ultraviolet photodetectors using thermally activated delayed fluorescence materials as electron acceptor
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Solution-processed, fullerene-free organic ultraviolet photodetectors using thermally activated delayed fluorescence materials as electron acceptor

机译:使用热活化的延迟荧光材料作为电子受体的溶液加工的富烯有机紫外线光电探测器

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Solution-processed organic ultraviolet photodetectors (UV-PDs) have been investigated for many years due to their mechanical flexibility and the potential for large-scale roll-to-roll processability. Fullerene derivatives are the most widely used electron acceptors in solution-processed photodetectors. However, they are not suitable for selective UV detection due to their wide absorption spreading the whole visible range. Here, three thermally activated delayed fluorescence (TADF) materials of 4,5-bis(carbazol-9-yl)-1,2-dicyanobenzene (2CzPN), 3,4,5,6-tetrakis(carbazol-9-yl)-1,2-dicyanobenzene (4CzPN) and 2,4,5,6-tetrakis(carbazol-9-yl)-1,3-dicyanobenzene (4CzIPN) with strong ultraviolet absorption are first utilized as the electron acceptors in solution-processed UV-PDs. Operating at room temperature, all UV-PDs display comparatively photo-detective ability, and the device composed of poly (N-vinyl carbazole) (PVK):4CzPN behaves the best comprehensive performance with a high detectivity of 1.09 x 10(12) Jones. Additionally, we find that the variations in energy level, film morphology and carrier mobility of the photoactive layer affect the UV-PDs performance, particularly with regards to the dark current and thus the detectivity. By using ultra-thin silver layer as the electrode, visibly semitransparent UV-PDs with an average transmittance of 43% are obtained, and the optical simulations indicate that the light harvest and exciton generation properties of active layers have a strong influence on the performance of the semitransparent devices.
机译:溶液加工的有机紫外光电探测器(UV-PDS)已经研究了许多年,由于它们的机械柔韧性和对于大规模辊到辊加工的潜力。富勒烯衍生物在溶液加工的光电检测器的最广泛使用的电子受体。然而,它们不适合于选择性的UV检测,由于其宽的吸收扩频整个可见光范围。这里,三个热活化延迟荧光(TADF)的4,5-双(咔唑-9-基)-1,2-二氰基苯(2CzPN)材料,3,4,5,6-四(咔唑-9-基) -1,2-二氰基苯(4CzPN)和2,4,5,6-四(咔唑-9-基)-1,3-二氰基苯(4CzIPN)具有很强的紫外吸收首先用作在处理溶液中的电子受体UV-PD功能。在室温下操作,所有UV-PD的显示相对光侦探能力,和聚(N-乙烯基咔唑)(PVK)构成的装置:4CzPN工作,并有1.09×10(12)的高探测灵敏度最佳的综合性能琼斯。此外,我们发现,在能量水平中的变化,薄膜形态和光活性层的载流子迁移的影响UV-PD的性能,特别是关于暗电流,从而探测灵敏度。通过使用超薄银层作为电极,明显半透明UV-PD设备用的43%的平均透射率获得,并且光学模拟表明,活性层​​的光收获和激子产生性质对的性能有很强的影响半透明装置。

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