Suppressing leakage current by interfacial engineering for highly sensitive, broadband, self-powered FACsPbI3 perovskite photodetectors

Author:

Bhardwaj Bhupesh12ORCID,Bothra Urvashi1ORCID,Singh Shivam1ORCID,Mills Sophie2ORCID,Ronningen T. J.2ORCID,Krishna Sanjay2ORCID,Kabra Dinesh13ORCID

Affiliation:

1. Department of Physics, Indian Institute of Technology Bombay 1 , Powai, Mumbai 400076, India

2. Electrical and Computer Engineering Department, Ohio State University 2 , Columbus, Ohio 43210, USA

3. National Centre for Photovoltaics Research and Education (NCPRE), Indian Institute of Technology Bombay 3 , Powai, Mumbai 400076, India

Abstract

Dark current is considered as one of the important parameters to suppress temporal noise and enhance sensitivity of photodetectors. This study shows the effect of active layer thickness and different interfacial layers in the suppression of leakage current. High-sensitivity (D* > 1012 Jones) perovskite photodetectors (PPDs) are fabricated using the device structure of ITO/PEDOT: PSS/FA0.95Cs0.05PbI3 (dPVSK)/ electron transport layer (ETL)/BCP/Ag with noise current <1 pA Hz−½. These PPDs have a broadband response from near-ultraviolet to near-infrared region (300–840 nm). The overall performance of the PPDs enhanced for the optimal thickness of active layer of dPVSK = 600 nm and ETL PC60BM layer thickness of dETL = 50 nm. The total noise current of the PPD is further suppressed by replacing the ETL PC60BM (in = 63.11 fA Hz−½) layer by a PC70BM (in = 33.41 fA Hz−½) layer. This further improved other figures of merit for these PPDs. Comparison with published reports on PPDs is included to compare with the state-of-the-art detectors.

Funder

Ministry of Education, India

National Centre for Photovoltaic Research and Education

Science and Engineering Research Board

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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