Ameliorating Properties of Perovskite and Perovskite–Silicon Tandem Solar Cells via Mesoporous Antireflection Coating Model

Author:

Wang Weijian12ORCID,Yu Gang3,Mao Lebao4,Attique Sanam2,Si Zhiwei3,Yang Qing5,Zhang Yongqiang5,Huang Guiqiu1,Zhang Haiyan1,Yan Ximing1,Wang Shengfu4,Zhang Xiuhua4

Affiliation:

1. Guangxi Key Laboratory of Green Chemical Materials and Safety Technology Guangxi Engineering Research Center for New Chemical Materials and Safety Technology Beibu Gulf University Qinzhou 535011 China

2. Institute for Composites Science Innovation School of Materials Science and Engineering Zhejiang University Hangzhou 310000 China

3. Nano Science and Technology Institute University of Science and Technology of China Suzhou 215123 China

4. Collaborative Innovation Center for Advanced Organic Chemical Materials Co‐constructed by the Province and Ministry College of Chemistry and Chemical Engineering Hubei University Wuhan 430062 China

5. IEK5‐Photovoltaics Forschungszentrum Jülich Wilhelm‐Johnen‐Strasse 52425 Jülich Germany

Abstract

AbstractIt is anticipated that perovskite solar cells (PSCs) will overtake other products in the market for next‐generation photovoltaics. The optical loss, however, continues to be a flaw that restricts the photocurrent (Jph) of PSCs. Mesoporous antireflection coatings (ARCs), both monolayer and multilayer, are designed using a combination of the finite element method and equivalent medium theory, and ARCs models are merged with PSCs. In the current work, mesoporous ARCs are made, the optical performance of the device is evaluated using optical modeling, and then the ARCs are integrated into solar cells. The simulation results show that the Jph of planar inverted PSCs can increase to 24.00 mA cm−2 when the front surface of PSCs adopts mesoporous ARC (via parameter optimization and sensible arrangement and combination). An increase of 0.98 mA cm−2 in Jph of PSCs is observed in comparison with flat ARC (23.02 mA cm−2). The strong light transmission and low reflection properties of the mesoporous ARCs are confirmed by the optimized solution. It is important to note that the first fusion of mesoporous and multilayer ARC offers a fresh approach to the development of perovskite and perovskite/silicon tandem solar cells with extremely high efficiency.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electronic, Optical and Magnetic Materials

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