Double Fence Porphyrins Featuring Indacenodithiophene Group as an Effective Donor for High‐Efficiency Dye‐Sensitized Solar Cells

Author:

Chen Ching‐Chin1ORCID,Chen Yu‐Hsuan1ORCID,Nguyen Vinh Son2ORCID,Chen Sheng‐Yang1,Tsai Meng‐Chen1,Chen Jia‐Sian1,Lin Sing‐Yu1,Wei Tzu‐Chien2ORCID,Yeh Chen‐Yu1ORCID

Affiliation:

1. Department of Chemistry i‐Center for Advanced Science and Technology (i‐CAST) Innovation and Development Center of Sustainable Agriculture (IDCSA) National Chung Hsing University No. 145, Xingda Road, South District Taichung City 402 Taiwan

2. Department of Chemical Engineering National Tsing‐Hua University No. 101, Section 2, Guangfu Road, East District Hsinchu City 300 Taiwan

Abstract

AbstractPorphyrins are an important category of dyes for efficient dye‐sensitized solar cells (DSSCs). However, the efficiency improvement of DSSCs lags behind those of organic and perovskite solar cells owing to deficiencies in new design strategies of dye molecular structures. Recently, double fence porphyrins with superior photovoltaic performance were reported, in which eight alkoxyl chains were introduced to wrap the porphyrin core and retard the approach of the electrolyte to the surface of TiO2. On the basis of the design strategy of double fence porphyrins, novel porphyrins bJS8, YS2, YS3, YS7, and MC1 featuring dual functional indacenodithiophene group are synthesized and their photovoltaic performance in DSSCs are studied. Among these new double fence porphyrin dyes, YS7 exhibits an improved power conversion efficiency of 11.4% (short circuit photocurrent (JSC) = 17.34 mA cm−2, open circuit photovoltage (VOC) = 0.864 V, and fill factor (FF) = 0.758) compared to the previously reported double fence porphyrin bJS2 of 10.7% (JSC = 16.59 mA cm−2, VOC = 0.849 V, and FF = 0.759) and the benchmark porphyrin dye GY50 of 10.1% (JSC = 16.14 mA cm−2, VOC = 0.863 V, and FF = 0.725) under optimized conditions, providing a new molecular design strategy for high‐efficiency porphyrin dyes in DSSCs.

Funder

Ministry of Science and Technology, Taiwan

Publisher

Wiley

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

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