Natural Bio‐additive Chlorophyll Derivative Enables 17.30% Efficiency Organic Solar Cells

Author:

Duan Shengnan123ORCID,Sasaki Shin‐ichi4,Han Deman2,Zhang Guangquan3,Li Dengfeng1,Feng Chunbao1,Wang Xiao‐Feng5,Tamiaki Hitoshi6,Chung Sein7,Cho Kilwon7,Li Gang8,Lu Shirong23ORCID

Affiliation:

1. School of Science Chongqing University of Posts and Telecommunications Chongqing 400065 China

2. Department of Material Science and Technology Taizhou University Taizhou 318000 China

3. Chongqing Institute of Green and Intelligent Technology Chinese Academy of Sciences Chongqing 400714 China

4. Department of Medical Bioscience Faculty of Bioscience Nagahama Institute of Bio‐Science and Technology Nagahama Shiga 526‐0829 Japan

5. Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education) College of Physics Jilin University Changchun 130012 China

6. Graduate School of Life Sciences Ritsumeikan University Kusatsu Shiga 525‐8577 Japan

7. Department of Chemical Engineering Pohang University of Science and Technology Pohang 37673 South Korea

8. Department of Electronic and Information Engineering The Hong Kong Polytechnic University Hung Hum Kowloon Hong Kong SAR 999077 China

Abstract

AbstractAdditive‐assisted donor and acceptor domain regulation is regarded as an effective strategy to further release the potential photovoltaic performance of the existing organic solar cells (OSCs). Meanwhile, it is also critical to find high‐efficient, stable, non‐toxic, and low‐cost biological materials as bio‐additives to replace the traditional toxic halogen‐based additives. In this study, bio‐additives derived from a natural chlorophyll pigment named as ZnChl and H2Chl are employed to optimize the morphology and molecular stack of the PM6:Y6 active layer. The eutectic molecular stack of the blends is more ordered and tighter after introducing the bio‐additive chlorophyll derivatives to the system compared to the pristine PM6:Y6 blends. Owing to such a fine‐tuned donor‐acceptor microstructure network, the photovoltaic performance of the H2Chl bio‐additive‐based OSC achieves a 17.30% PCE and ZnChl‐based device obtains an efficiency of 16.61%, which is much higher than that of the control device with a 15.97% PCE. The result proves the feasibility of introducing environmental‐ and eco‐friendly chlorophyll derivatives as bio‐additives to further improve the photovoltaic performance of the OSCs.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Chongqing

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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