Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5442749 | Optical Materials | 2017 | 6 Pages |
Abstract
Herein, we demonstrate a solution-processed visible wavelength organic photodiode (OPD) using donor/acceptor dyad of zinc phthalocyanine (ZnPc) and [6,6]-phenyl-C71-butyric-acid methyl ester (PC71BM), respectively. The synergic absorption profiles of both ZnPc and PC71BM moieties have been exploited to realize broader (350 and 800 nm) and consistent absorption spectrum of the photoactive film. The optimum loading ratio (by volume) of D/A dyad has been estimated to be 1:0.8, via quenching phenomenon in ZnPc photoluminescence spectrum. The performance of the OPD has been evaluated by detecting the photocurrent density with respect to varied illumination levels (0-150 mW/cm2) of impinging light at different reverse bias conditions. Under identical reverse bias mode, the photocurrent density has shown significant upsurge as the incident intensity of light is increased; ultimately leading to the significantly higher responsivity (162.4 μA/W) of the fabricated diode. The light to dark current density ratio (Jph/Jd) of the device at 3 V reverse bias has been calculated to be â¼20.12. The transient photocurrent density response of the fabricated OPD has also been characterized at â4 V operational bias under switch ON/OFF illumination. The measured response and recovery time for the fabricated OPD are â¼200 and 300 ms, respectively.
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Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Qayyum Zafar, Noshin Fatima, Khasan S. Karimov, Muhammad M. Ahmed, Khaulah Sulaiman,