• Acta Optica Sinica
  • Vol. 44, Issue 4, 0404001 (2024)
Yifan Hu1, Yulu Hua2, Ting Ji1、*, Linlin Shi2, Yanxia Cui2, and Guohui Li2、**
Author Affiliations
  • 1College of Physics, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China
  • 2College of Electronic Information and Optical Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China
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    DOI: 10.3788/AOS231612 Cite this Article Set citation alerts
    Yifan Hu, Yulu Hua, Ting Ji, Linlin Shi, Yanxia Cui, Guohui Li. P3HT∶Y6-Based Near-Infrared Organic Photomultiplication Photodetectors by Intermolecular Charge Transfer Effects[J]. Acta Optica Sinica, 2024, 44(4): 0404001 Copy Citation Text show less
    Structure and performance of devices without and with Al2O3. (a) Structure diagram of two devices; (b) J-V curves of two devices at 850 nm (1.27 mW/cm2); (c) light-to-dark current ratio curves of two devices at 850 nm (1.27 mW/cm2); (d) energy level diagrams of two devices
    Fig. 1. Structure and performance of devices without and with Al2O3. (a) Structure diagram of two devices; (b) J-V curves of two devices at 850 nm (1.27 mW/cm2); (c) light-to-dark current ratio curves of two devices at 850 nm (1.27 mW/cm2); (d) energy level diagrams of two devices
    Characterization of Al2O3 modified device under 15 V bias voltage. (a) EQE spectrum; (b) transient response curves; (c) transient response curves under 1120, 1208, and 1310 nm light source irradiation; (d) f-3 dB measurement results under modulated light source
    Fig. 2. Characterization of Al2O3 modified device under 15 V bias voltage. (a) EQE spectrum; (b) transient response curves; (c) transient response curves under 1120, 1208, and 1310 nm light source irradiation; (d) f-3 dB measurement results under modulated light source
    Characterizations of Al2O3 modified device under different light intensities. (a) Dynamic range under 505 nm light source; (b) EQE and responsibility under 505 nm light source within dynamic range; (c) specific detectivity under 505 nm light source within dynamic range; (d) dynamic range under 860 nm light source; (e) EQE and responsibility under 860 nm light source within dynamic range; (f) specific detectivity under 860 nm light source within dynamic range; (g) dynamic range under 1310 nm light source; (h) EQE and responsibility under 1310 nm light source within dynamic range; (i) specific detectivity under 1310 nm light source within dynamic range
    Fig. 3. Characterizations of Al2O3 modified device under different light intensities. (a) Dynamic range under 505 nm light source; (b) EQE and responsibility under 505 nm light source within dynamic range; (c) specific detectivity under 505 nm light source within dynamic range; (d) dynamic range under 860 nm light source; (e) EQE and responsibility under 860 nm light source within dynamic range; (f) specific detectivity under 860 nm light source within dynamic range; (g) dynamic range under 1310 nm light source; (h) EQE and responsibility under 1310 nm light source within dynamic range; (i) specific detectivity under 1310 nm light source within dynamic range
    Mechanism analysis diagram of the device. (a) Transient response curves of pure P3HT thin film as active layer and Al2O3 modified devices; (b) absorption spectra of P3HT, Y6, and P3HT∶Y6 (100∶1); (c) Raman spectra of P3HT and P3HT∶Y6 (100∶1); (d) photoluminescence spectra of P3HT and P3HT∶Y6 (100∶1) excited by a 325 nm light source; (e) principle schematic of intermolecular charge transfer formation
    Fig. 4. Mechanism analysis diagram of the device. (a) Transient response curves of pure P3HT thin film as active layer and Al2O3 modified devices; (b) absorption spectra of P3HT, Y6, and P3HT∶Y6 (100∶1); (c) Raman spectra of P3HT and P3HT∶Y6 (100∶1); (d) photoluminescence spectra of P3HT and P3HT∶Y6 (100∶1) excited by a 325 nm light source; (e) principle schematic of intermolecular charge transfer formation
    Yifan Hu, Yulu Hua, Ting Ji, Linlin Shi, Yanxia Cui, Guohui Li. P3HT∶Y6-Based Near-Infrared Organic Photomultiplication Photodetectors by Intermolecular Charge Transfer Effects[J]. Acta Optica Sinica, 2024, 44(4): 0404001
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