Realizing 18.03% efficiency and good junction characteristics in organic solar cells via hydrogen-bonding interaction between glucose and ZnO electron transport layers
Artikel i vetenskaplig tidskrift, 2022

Electron transport layers (ETLs) with excellent electron extraction capability are essential for realizing high efficiency in organic solar cells (OSCs). A sol-gel-processed ZnO ETL is widely used in OSCs due to its high mobility and suitable work function. However, the existence of defects usually results in low photovoltaic performance during the operation of OSCs. In this work, glucose (Gl) was used to passivate free OH traps via hydrogen-bonding interaction and formed ZnO/Gl ETLs with ZnO, which exhibited improved electron extraction capability and reduced trap defect density. Thus, a champion efficiency of 18.03% was obtained in a PM6:Y6 light absorber-based cell, which is >11% higher than that of the reference cell (16.15%) with a pristine ZnO ETL. Impressive enhancements by >11% were also observed in different fullerene and non-fullerene light absorber-based cells relative to that of the reference cell. This study demonstrates a new strategy to design ETLs for realizing high efficiency in OSCs.

Författare

Zhongqiang Wang

Taiyuan University of Technology

Yabing Ren

Taiyuan University of Technology

Jiawei Meng

Taiyuan University of Technology

Xuefeng Zou

Taiyuan University of Technology

Shenjian Wang

Taiyuan University of Technology

Min Zhao

Taiyuan University of Technology

Hua Wang

Taiyuan University of Technology

Yuying Hao

Taiyuan University of Technology

Bingshe Xu

Taiyuan University of Technology

Ergang Wang

Chalmers, Kemi och kemiteknik, Tillämpad kemi

Shougen Yin

Tianjin University of Technology

Journal of Materials Chemistry A

20507488 (ISSN) 20507496 (eISSN)

Vol. 11 4 1810-1816

Ge en grundläggande förståelse för ljusemitterande elektrokemiska celler

Vetenskapsrådet (VR) (2019-02345), 2020-01-01 -- 2025-12-31.

Nästa generation organiska solceller (OPV 2.0)

Vetenskapsrådet (VR) (2016-06146), 2017-01-01 -- 2022-12-31.

Vetenskapsrådet (VR) (2016-06146), 2017-01-01 -- 2022-12-31.

Vetenskapsrådet (VR) (2016-06146), 2017-01-01 -- 2022-12-31.

Ämneskategorier

Materialkemi

Annan medicinsk grundvetenskap

Annan kemi

DOI

10.1039/d2ta07856b

Mer information

Senast uppdaterat

2024-03-07