Scalable Fabrication of Black Phosphorous Films for Infrared Photodetector Arrays

Author:

Corletto Alexander1ORCID,Myagmarsereejid Purevlkham2ORCID,Wang Shifan1ORCID,Yan Wei1ORCID,Balendhran Sivacarendran1ORCID,Liu Huan3ORCID,Zhong Yu Lin2ORCID,Crozier Kenneth B.134ORCID,Batmunkh Munkhbayar2ORCID,Bullock James1ORCID

Affiliation:

1. Department of Electrical and Electronic Engineering The University of Melbourne Parkville Melbourne Victoria 3010 Australia

2. Queensland Micro‐ and Nanotechnology Centre School of Environment and Science Griffith University Nathan Campus Brisbane Queensland 4111 Australia

3. School of Physics The University of Melbourne Parkville Melbourne Victoria 3010 Australia

4. ARC Centre of Excellence for Transformative Meta‐Optical Systems The University of Melbourne Parkville Melbourne Victoria 3010 Australia

Abstract

AbstractBulk black phosphorous (bP) exhibits excellent infrared (IR) optoelectronic properties, but most reported bP IR photodetectors are fabricated from single exfoliated flakes with lateral sizes of < 100 µm. Here, scalable thin films of bP suitable for IR photodetector arrays are realized through a tailored solution‐deposition method. The properties of the bP film and their protective capping layers are optimized to fabricate bP IR photoconductors exhibiting specific detectivities up to 4.0 × 108 cm Hz1/2 W−1 with fast 30/60 µs rise/fall times under λ = 2.2 µm illumination. The scalability of the bP thin film fabrication is demonstrated by fabricating a linear array of 25 bP photodetectors and obtaining 25 × 25 pixel IR images at ≈203 ppi with good spatial fidelity. This research demonstrates a commercially viable method of fabricating scalable bP thin films for optoelectronic devices including room temperature‐operable IR photodetector arrays.

Funder

Australian National Fabrication Facility

Australian Research Council

Publisher

Wiley

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