DOAJ Open Access 2023

Bicontinuous donor and acceptor fibril networks enable 19.2% efficiency pseudo‐bulk heterojunction organic solar cells

Jing Zhou Donghui Li Liang Wang Xinying Zhang Nan Deng +10 lainnya

Abstrak

Abstract Realizing bicontinuous fibrillar charge transport networks in the photoactive layer has been considered a promising method to achieve high‐efficiency organic solar cells (OSCs); however, this has been rarely achieved due to the interference of molecular organization of donor and acceptor components during solution casting. In this contribution, the fibrillization of polymer donor PM6 and small molecular nonfullerene acceptor L8‐BO is realized with the assistance of conjugated polymer D18‐Cl. Atomic force microscopy and photo‐induced force microscopy reveal that PM6 and D18‐Cl co‐assemble into long and slender fibrils within wide blending ratios due to their high compatibility; in contrast, the fibrillization of L8‐BO can be encouraged with the incorporation of 1% D18‐Cl. By utilizing a pseudo‐bulk heterojunction (p‐BHJ) active layer fabricated by layer‐by‐layer deposition, the optimized PM6+20% D18‐Cl/L8‐BO+1% D18‐Cl OSCs obtain bicontinuous fibril networks, leading to enhanced exciton dissociation and charge transport processes and superior power conversion efficiency of 19.2% (certified 18.91%) compared to 18.8% of the PM6:D18‐Cl:L8‐BO ternary BHJ OSCs.

Penulis (15)

J

Jing Zhou

D

Donghui Li

L

Liang Wang

X

Xinying Zhang

N

Nan Deng

C

Chuanhang Guo

C

Chen Chen

Z

Zirui Gan

C

Chenhao Liu

W

Wei Sun

D

Dan Liu

W

Wei Li

Z

Zhe Li

K

Kai Wang

T

Tao Wang

Format Sitasi

Zhou, J., Li, D., Wang, L., Zhang, X., Deng, N., Guo, C. et al. (2023). Bicontinuous donor and acceptor fibril networks enable 19.2% efficiency pseudo‐bulk heterojunction organic solar cells. https://doi.org/10.1002/idm2.12129

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Lihat di Sumber doi.org/10.1002/idm2.12129
Informasi Jurnal
Tahun Terbit
2023
Sumber Database
DOAJ
DOI
10.1002/idm2.12129
Akses
Open Access ✓