DOAJ Open Access 2025

A Large Area Hybrid Phototransistor Platform with Large Detectivity and Fast Response to NIR Light

Federico Prescimone Wejdan S. AlGhamdi Giulia Baroni Marco Natali Aiman Fakieh +4 lainnya

Abstrak

Abstract Within multijunction organic and hybrid photodetectors (PDs), organic and hybrid phototransistors (HPTs) hold promises for high sensitivity (S) and specific detectivity (D*). However, it is difficult to achieve a trade‐off between a large sensing area, a fast response, and a high D*. Here, we propose an alternative phototransistor concept relying on a geometrically engineered tri‐channel (Tr‐iC) architecture with a 4‐mm2 large sensing area, applied to a multilayer HPT whose active region is comprised of an inorganic In2O3/ZnO n‐type field‐effect channel and solution‐processed organic bulk heterojunction (BHJ) or hybrid perovskite light‐sensing layer. The resulting HPTs combine a responsivity (R) up to 105 A/W, thanks to the efficient charge transport (at the bottom In2O3/ZnO layer) and a D* estimated at 1015Jones, which allows to measure low light power densities down to 10 nW cm−2. These figures of merit are coupled to a fast response (risetime <10 ms and falltime of ≈100 ms for illumination, in the µW/cm2 range), which is comparable to the time‐response of organic PDs in a diode architecture. The experimental data are supported by a comprehensive device modeling, which helps highlighting the peculiar advantages of the proposed large area, Tr‐iC, and multilayer HPT architecture.

Penulis (9)

F

Federico Prescimone

W

Wejdan S. AlGhamdi

G

Giulia Baroni

M

Marco Natali

A

Aiman Fakieh

H

Hendrik Faber

M

Margherita Bolognesi

T

Thomas D. Anthopoulos

S

Stefano Toffanin

Format Sitasi

Prescimone, F., AlGhamdi, W.S., Baroni, G., Natali, M., Fakieh, A., Faber, H. et al. (2025). A Large Area Hybrid Phototransistor Platform with Large Detectivity and Fast Response to NIR Light. https://doi.org/10.1002/aelm.202400762

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.1002/aelm.202400762
Akses
Open Access ✓