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Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection

[Image: see text] Antisolvent-assisted spin coating has been widely used for fabricating metal halide perovskite films with smooth and compact morphology. However, localized nanoscale inhomogeneities exist in these films owing to rapid crystallization, undermining their overall optoelectronic perfor...

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Autores principales: Du, Tian, Richheimer, Filipe, Frohna, Kyle, Gasparini, Nicola, Mohan, Lokeshwari, Min, Ganghong, Xu, Weidong, Macdonald, Thomas J., Yuan, Haozhen, Ratnasingham, Sinclair R., Haque, Saif, Castro, Fernando A., Durrant, James R., Stranks, Samuel D., Wood, Sebastian, McLachlan, Martyn A., Briscoe, Joe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9007526/
https://www.ncbi.nlm.nih.gov/pubmed/35061402
http://dx.doi.org/10.1021/acs.nanolett.1c03839
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author Du, Tian
Richheimer, Filipe
Frohna, Kyle
Gasparini, Nicola
Mohan, Lokeshwari
Min, Ganghong
Xu, Weidong
Macdonald, Thomas J.
Yuan, Haozhen
Ratnasingham, Sinclair R.
Haque, Saif
Castro, Fernando A.
Durrant, James R.
Stranks, Samuel D.
Wood, Sebastian
McLachlan, Martyn A.
Briscoe, Joe
author_facet Du, Tian
Richheimer, Filipe
Frohna, Kyle
Gasparini, Nicola
Mohan, Lokeshwari
Min, Ganghong
Xu, Weidong
Macdonald, Thomas J.
Yuan, Haozhen
Ratnasingham, Sinclair R.
Haque, Saif
Castro, Fernando A.
Durrant, James R.
Stranks, Samuel D.
Wood, Sebastian
McLachlan, Martyn A.
Briscoe, Joe
author_sort Du, Tian
collection PubMed
description [Image: see text] Antisolvent-assisted spin coating has been widely used for fabricating metal halide perovskite films with smooth and compact morphology. However, localized nanoscale inhomogeneities exist in these films owing to rapid crystallization, undermining their overall optoelectronic performance. Here, we show that by relaxing the requirement for film smoothness, outstanding film quality can be obtained simply through a post-annealing grain growth process without passivation agents. The morphological changes, driven by a vaporized methylammonium chloride (MACl)–dimethylformamide (DMF) solution, lead to comprehensive defect elimination. Our nanoscale characterization visualizes the local defective clusters in the as-deposited film and their elimination following treatment, which couples with the observation of emissive grain boundaries and excellent inter- and intragrain optoelectronic uniformity in the polycrystalline film. Overcoming these performance-limiting inhomogeneities results in the enhancement of the photoresponse to low-light (<0.1 mW cm(–2)) illumination by up to 40-fold, yielding high-performance photodiodes with superior low-light detection.
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spelling pubmed-90075262022-04-14 Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection Du, Tian Richheimer, Filipe Frohna, Kyle Gasparini, Nicola Mohan, Lokeshwari Min, Ganghong Xu, Weidong Macdonald, Thomas J. Yuan, Haozhen Ratnasingham, Sinclair R. Haque, Saif Castro, Fernando A. Durrant, James R. Stranks, Samuel D. Wood, Sebastian McLachlan, Martyn A. Briscoe, Joe Nano Lett [Image: see text] Antisolvent-assisted spin coating has been widely used for fabricating metal halide perovskite films with smooth and compact morphology. However, localized nanoscale inhomogeneities exist in these films owing to rapid crystallization, undermining their overall optoelectronic performance. Here, we show that by relaxing the requirement for film smoothness, outstanding film quality can be obtained simply through a post-annealing grain growth process without passivation agents. The morphological changes, driven by a vaporized methylammonium chloride (MACl)–dimethylformamide (DMF) solution, lead to comprehensive defect elimination. Our nanoscale characterization visualizes the local defective clusters in the as-deposited film and their elimination following treatment, which couples with the observation of emissive grain boundaries and excellent inter- and intragrain optoelectronic uniformity in the polycrystalline film. Overcoming these performance-limiting inhomogeneities results in the enhancement of the photoresponse to low-light (<0.1 mW cm(–2)) illumination by up to 40-fold, yielding high-performance photodiodes with superior low-light detection. American Chemical Society 2022-01-21 2022-02-09 /pmc/articles/PMC9007526/ /pubmed/35061402 http://dx.doi.org/10.1021/acs.nanolett.1c03839 Text en © 2022 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Du, Tian
Richheimer, Filipe
Frohna, Kyle
Gasparini, Nicola
Mohan, Lokeshwari
Min, Ganghong
Xu, Weidong
Macdonald, Thomas J.
Yuan, Haozhen
Ratnasingham, Sinclair R.
Haque, Saif
Castro, Fernando A.
Durrant, James R.
Stranks, Samuel D.
Wood, Sebastian
McLachlan, Martyn A.
Briscoe, Joe
Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
title Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
title_full Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
title_fullStr Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
title_full_unstemmed Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
title_short Overcoming Nanoscale Inhomogeneities in Thin-Film Perovskites via Exceptional Post-annealing Grain Growth for Enhanced Photodetection
title_sort overcoming nanoscale inhomogeneities in thin-film perovskites via exceptional post-annealing grain growth for enhanced photodetection
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9007526/
https://www.ncbi.nlm.nih.gov/pubmed/35061402
http://dx.doi.org/10.1021/acs.nanolett.1c03839
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