Bowl‐Assisted Ball Assembly for Solvent‐Processing the C60 Electron Transport Layer of High‐Performance Inverted Perovskite Solar Cell

Author:

Xing Zhou1,Liu Fu2,Li Shu‐Hui2,Huang Xianzhen3,Fan Ajuan1,Huang Qiufeng1,Yang Shihe34ORCID

Affiliation:

1. Fujian Key Laboratory of Polymer Materials Fujian Provincial Key Laboratory of Advanced Materials Oriented Chemical Engineering College of Chemistry & Materials Science Fujian Normal University 350007 Fuzhou Fujian China

2. State Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources School of Chemistry and Pharmaceutical Sciences Guangxi Normal University 541004 Guilin Guangxi China

3. Guangdong Provincial Key Lab of Nano-Micro Materials Research School of Chemical Biology and Biotechnology Shenzhen Graduate School Peking University 518055 Shenzhen Guangdong China

4. Insitute of Biomedical Engineering Shenzhen Bay Laboratory 518055 Shenzhen Guangdong China

Abstract

AbstractPristine fullerene C60 is an excellent electron transport material for state‐of‐the‐art inverted structure perovskite solar cells (PSCs), but its low solubility leaves thermal evaporation as the only method for depositing it into a high‐quality electron transport layer (ETL). To address this problem, we herein introduce a highly soluble bowl‐shaped additive, corannulene, to assist in C60‐assembly into a smooth and compact film through the favorable bowl‐ball interaction. Our results show that not only corannulene can dramatically enhance the film formability of C60, it also plays a critical role in forming C60‐corannulene (CC) supramolecular species and in boosting intermolecular electron transport dynamics in the ETL. This strategy has allowed CC devices to deliver high power conversion efficiencies up to 21.69 %, which is the highest value among the PSCs based on the solution‐processed‐C60 (SP‐C60) ETL. Moreover, the stability of the CC device is far superior to that of the C60‐only device because corannulene can retard and curb the spontaneous aggregation of C60. This work establishes the bowl‐assisted ball assembly strategy for developing low‐cost and efficient SP‐C60 ETLs with high promise for fully‐SP PSCs.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Chemistry,Catalysis

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