Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells

A ZnO compact layer formed by electrodeposition and ZnO nanorods grown by chemical bath deposition (CBD) allow the processing of low-temperature, solution based and flexible solid state perovskite CH3NH3PbI3 solar cells. Conversion efficiencies of 8.90% were achieved on rigid substrates while the fl...

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Main Authors: Boix, Pablo P., Mhaisalkar, Subodh Gautam, Mathews, Nripan, Yantara, Natalia, Kumar, Mulmudi Hemant, Dharani, Sabba, Graetzel, Michael
Other Authors: School of Materials Science & Engineering
Format: Journal Article
Language:English
Published: 2013
Subjects:
Online Access:https://hdl.handle.net/10356/100521
http://hdl.handle.net/10220/18184
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author Boix, Pablo P.
Mhaisalkar, Subodh Gautam
Mathews, Nripan
Yantara, Natalia
Kumar, Mulmudi Hemant
Dharani, Sabba
Graetzel, Michael
author2 School of Materials Science & Engineering
author_facet School of Materials Science & Engineering
Boix, Pablo P.
Mhaisalkar, Subodh Gautam
Mathews, Nripan
Yantara, Natalia
Kumar, Mulmudi Hemant
Dharani, Sabba
Graetzel, Michael
author_sort Boix, Pablo P.
collection NTU
description A ZnO compact layer formed by electrodeposition and ZnO nanorods grown by chemical bath deposition (CBD) allow the processing of low-temperature, solution based and flexible solid state perovskite CH3NH3PbI3 solar cells. Conversion efficiencies of 8.90% were achieved on rigid substrates while the flexible ones yielded 2.62%.
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spelling ntu-10356/1005212021-01-08T07:30:22Z Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells Boix, Pablo P. Mhaisalkar, Subodh Gautam Mathews, Nripan Yantara, Natalia Kumar, Mulmudi Hemant Dharani, Sabba Graetzel, Michael School of Materials Science & Engineering Energy Research Institute @ NTU (ERI@N) DRNTU::Engineering::Materials A ZnO compact layer formed by electrodeposition and ZnO nanorods grown by chemical bath deposition (CBD) allow the processing of low-temperature, solution based and flexible solid state perovskite CH3NH3PbI3 solar cells. Conversion efficiencies of 8.90% were achieved on rigid substrates while the flexible ones yielded 2.62%. Accepted version 2013-12-10T01:29:16Z 2019-12-06T20:24:00Z 2013-12-10T01:29:16Z 2019-12-06T20:24:00Z 2013 2013 Journal Article Kumar, M. H., Yantara, N., Dharani, S., Graetzel, M., Mhaisalkar, S., Boix, P. P.,& Mathews, N. (2013). Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells. Chemical communications, 49(94), 11089-11091. https://hdl.handle.net/10356/100521 http://hdl.handle.net/10220/18184 10.1039/c3cc46534a en Chemical communications © 2013 Royal Society of Chemistry. This is the author created version of a work that has been peer reviewed and accepted for publication by Chemical Communications, Royal Society of Chemistry. It incorporates referee’s comments but changes resulting from the publishing process, such as copyediting, structural formatting, may not be reflected in this document. The published version is available at: http://dx.doi.org/10.1039/c3cc46534a. 3 p. application/pdf
spellingShingle DRNTU::Engineering::Materials
Boix, Pablo P.
Mhaisalkar, Subodh Gautam
Mathews, Nripan
Yantara, Natalia
Kumar, Mulmudi Hemant
Dharani, Sabba
Graetzel, Michael
Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells
title Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells
title_full Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells
title_fullStr Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells
title_full_unstemmed Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells
title_short Flexible, low-temperature, solution processed ZnO-based perovskite solid state solar cells
title_sort flexible low temperature solution processed zno based perovskite solid state solar cells
topic DRNTU::Engineering::Materials
url https://hdl.handle.net/10356/100521
http://hdl.handle.net/10220/18184
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