Covalent Polymeric Framework/ Bi 2Se 3-Based Heterostructure for Highly Efficient Wideband Photodetector

This article reports an organic/inorganic hybrid wideband photodetector (PD) made of a topological insulator (TI), Bi2Se3, and a donor-acceptor covalent polymeric framework (CPF) material (PDI-Tz) on a p-type Si substrate. Due to the formation of a strong type-II heterojunction between the CPF and T...

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Veröffentlicht in:IEEE transactions on electron devices 2024-09, Vol.71 (9), p.5482-5488
Hauptverfasser: Harish Yuvaraj, G. P., Mathew, Sanjana, Halder, Sayan, Bahadursha, Naresh, Keerthi C. J., Kanungo, Sayan, Sahatiya, Parikshit, Chakraborty, Chanchal, Pal, Subhradeep
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Sprache:eng
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Zusammenfassung:This article reports an organic/inorganic hybrid wideband photodetector (PD) made of a topological insulator (TI), Bi2Se3, and a donor-acceptor covalent polymeric framework (CPF) material (PDI-Tz) on a p-type Si substrate. Due to the formation of a strong type-II heterojunction between the CPF and TI, remarkably low dark current levels are expected. The fabricated PD exhibited a broadband photodetection capability ranging between 400 and 1100 nm with a peak responsivity and detectivity of 11.91 A/W and 2.51\times 10{^{{15}}} Jones at 400 nm. In addition, the PD offered an ultrahigh external quantum efficiency (EQE) of 3457% at 400 nm. Furthermore, stable time-dependent photoresponse characteristics with millisecond-order transient metrics indicate the efficacy of the fabricated PD.
ISSN:0018-9383
1557-9646
DOI:10.1109/TED.2024.3427610