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- W2627577312 abstract "Abstract Utilization of organic photodetectors (OPDs) and their applications for assembling on flexible and curved substrates have increased in recent years. However, organic semiconductors suffer from low carrier mobility that demands an optimized design and precise modeling for their applications. The OPDs frequency bandwidth is one of the most important criteria that needs to be investigated carefully. In this paper a comprehensive physical time-domain framework is introduced for bandwidth calculations as well as other several evaluation criteria. This model is verified by experimental measurements. According to the results, increasing the reverse bias voltage boosts the bandwidth of OPD owing to the increase of the carrier mobility. Based on the introduced simulation approach, the trade-off between the bandwidth and the responsivity has been investigated and an efficient design method is also proposed which could effectively improve the OPD performance." @default.
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- W2627577312 date "2017-10-01" @default.
- W2627577312 modified "2023-09-25" @default.
- W2627577312 title "Bandwidth and transient analysis of bilayer organic photodetectors" @default.
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- W2627577312 doi "https://doi.org/10.1016/j.orgel.2017.06.060" @default.
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