Covalent Organic Framework as a Precursor Additive Toward Efficient and Stable Perovskite Solar Cells

Author:

Gao Xiang1,Li Zhenyuan1,Guo Junjun12,Meng Genping3,Wang Bei12,Lang Guohao1,Tang Zhijie1,Feng Jiawei1,Chen Mengxiu1,Ling Xufeng4,Wang Baodui3,Yuan Jianyu15ORCID

Affiliation:

1. Institute of Functional Nano & Soft Materials (FUNSOM) Soochow University 199 Ren-Ai Road, Suzhou Industrial Park Suzhou Jiangsu 215123 P. R. China

2. Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices Soochow University Suzhou Jiangsu 215123 P. R. China

3. State Key Laboratory of Applied Organic Chemistry Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province Lanzhou University Lanzhou Gansu 730000 China

4. Chongqing Key Laboratory of Soft Condensed Matter Physics and Smart Materials College of Physics Chongqing University Chongqing 401331 P. R. China

5. Jiangsu Key Laboratory of Advanced Negative Carbon Technologies Soochow University Suzhou Jiangsu 215123 P. R. China

Abstract

In recent years, there has been significant progress in the use of organic–inorganic hybrid perovskites for photovoltaic applications. Engineering the compositions and/or morphology of perovskites has become the most effective method to address the challenges related to photovoltaic efficiency and stability. Herein, an amino‐functionalized covalent organic framework (NH2‐COF) as a precursor additive to modulate the crystallization of perovskites is incorporated. The NH2‐COF is found to decrease the defect concentration, reduce the nonradiative recombination within the perovskite layer, and further promote carrier transport. Correspondingly, the solar cells based on the NH2‐COF‐modified perovskites deliver a champion power conversion efficiency of 22.13% with a fill factor of 0.773 under AM 1.5G 100 mW cm−2 illumination. Furthermore, the device retains approximately 81% of its initial efficiency after 1000 h of aging under ambient conditions at a temperature of 30 °C and relative humidity ranging from 45% to 55%. It is believed that this work would provide a facile and efficient strategy to prepare high‐quality perovskite films for efficient and stable solar cells.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Science and Technology Program of Suzhou

Publisher

Wiley

Subject

Linguistics and Language,Anthropology,History,Language and Linguistics,Cultural Studies

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