Balancing efficiency and transparency in organic transparent photovoltaics

Abstract The challenges in transparent photovoltaic (TPV) fields are still that the device transparency and efficiency are difficult to be balanced to meet the requirements of practical applications. In this study, we systematically investigated the interrelationship between photovoltaic film proper...

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Published in:npj Flexible Electronics
Main Authors: Ruiqian Meng, Qianqing Jiang, Dianyi Liu
Format: Article
Language:English
Published: Nature Portfolio 2022-06-01
Online Access:https://doi.org/10.1038/s41528-022-00173-9
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author Ruiqian Meng
Qianqing Jiang
Dianyi Liu
author_facet Ruiqian Meng
Qianqing Jiang
Dianyi Liu
author_sort Ruiqian Meng
collection DOAJ
container_title npj Flexible Electronics
description Abstract The challenges in transparent photovoltaic (TPV) fields are still that the device transparency and efficiency are difficult to be balanced to meet the requirements of practical applications. In this study, we systematically investigated the interrelationship between photovoltaic film properties, optical transmission, and photovoltaic performances in the near-infrared harvesting organic TPVs. The results indicate that the photovoltaic film thickness determines the TPV’s transparency and meanwhile affects the device efficiency; by contrast, the donor–acceptor ratio only affects device efficiency and has little effect on transparency. By controlling the film thickness and donor–acceptor ratio, the average visible transmission (AVT) of TPVs can be precisely managed in the range of 40% - 85%, and the device efficiency can achieve as high as 4.06% and 2.38% while the AVT exceeds 70% and 80%, respectively. Importantly, the large area (~10 cm2) TPV modules and ultra-flexible devices were then successfully prepared based on the systematical study.
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spelling doaj-art-c4be0625416d41db8fbec8bb4bcff1cd2025-08-19T22:09:48ZengNature Portfolionpj Flexible Electronics2397-46212022-06-016111010.1038/s41528-022-00173-9Balancing efficiency and transparency in organic transparent photovoltaicsRuiqian Meng0Qianqing Jiang1Dianyi Liu2Zhejiang UniversityKey Laboratory of 3D Micro/Nano Fabrication and Characterization of Zhejiang Province, Research Center for Industries of the Future and School of Engineering, Westlake UniversityZhejiang UniversityAbstract The challenges in transparent photovoltaic (TPV) fields are still that the device transparency and efficiency are difficult to be balanced to meet the requirements of practical applications. In this study, we systematically investigated the interrelationship between photovoltaic film properties, optical transmission, and photovoltaic performances in the near-infrared harvesting organic TPVs. The results indicate that the photovoltaic film thickness determines the TPV’s transparency and meanwhile affects the device efficiency; by contrast, the donor–acceptor ratio only affects device efficiency and has little effect on transparency. By controlling the film thickness and donor–acceptor ratio, the average visible transmission (AVT) of TPVs can be precisely managed in the range of 40% - 85%, and the device efficiency can achieve as high as 4.06% and 2.38% while the AVT exceeds 70% and 80%, respectively. Importantly, the large area (~10 cm2) TPV modules and ultra-flexible devices were then successfully prepared based on the systematical study.https://doi.org/10.1038/s41528-022-00173-9
spellingShingle Ruiqian Meng
Qianqing Jiang
Dianyi Liu
Balancing efficiency and transparency in organic transparent photovoltaics
title Balancing efficiency and transparency in organic transparent photovoltaics
title_full Balancing efficiency and transparency in organic transparent photovoltaics
title_fullStr Balancing efficiency and transparency in organic transparent photovoltaics
title_full_unstemmed Balancing efficiency and transparency in organic transparent photovoltaics
title_short Balancing efficiency and transparency in organic transparent photovoltaics
title_sort balancing efficiency and transparency in organic transparent photovoltaics
url https://doi.org/10.1038/s41528-022-00173-9
work_keys_str_mv AT ruiqianmeng balancingefficiencyandtransparencyinorganictransparentphotovoltaics
AT qianqingjiang balancingefficiencyandtransparencyinorganictransparentphotovoltaics
AT dianyiliu balancingefficiencyandtransparencyinorganictransparentphotovoltaics