TY - JOUR
T1 - Fullerene-embedded porphyrin metallacages as photoactive additives for stable binary organic solar cells with a certified efficiency of 20.2%
AU - Bai, Hairui
AU - Su, Wenyan
AU - Li, Tengfei
AU - Zhang, Zeyuan
AU - Ma, Ruijie
AU - Yao, Zefan
AU - Xiang, Kai
AU - Maqsood, Muhammad Hamza
AU - Bi, Zhaozhao
AU - Liu, Han
AU - Wang, Ke
AU - Wu, Yue
AU - Kan, Bin
AU - Yan, Lihe
AU - Lu, Guanghao
AU - Luo, Zhenghui
AU - Chen, Jianhua
AU - Liu, Yuhang
AU - Zhang, Mingming
AU - Li, Gang
AU - Ma, Wei
AU - Fan, Qunping
N1 - Publisher Copyright:
This journal is © The Royal Society of Chemistry, 2025
PY - 2025/12/21
Y1 - 2025/12/21
N2 - Boosting both power-conversion-efficiency (PCE) and stability is crucial for the practical applications of organic solar cells (OSCs). Here, we synergistically improve the PCE and stability of OSCs using fullerene-embedded porphyrin metallacages (MC4⊃C60 and MC4⊃C70) as photoactive additives. Compared to the fullerene-free porphyrin metallacage (MC4) and MC4⊃C60, MC4⊃C70 exhibits superior photo-responsive activity, multistage crystallization behavior, and extraordinary non-covalent interactions with both the donor (PM6) and the acceptor (eC9-4ClO). Therefore, the MC4⊃C70-treated active layer attains improved photon harvesting capability and optimized blend morphology with ideal crystallinity, intermolecular π–π stacking, and phase separation, eventually diminishing trap density, facilitating exciton generation and dissociation, improving charge collection, and limiting charge recombination. As a result, the MC4⊃C70-treated OSCs achieve a higher PCE of 20.42% compared to those of metallacage-free (19.88%), MC4-treated (19.16%), and MC4⊃C60-treated (20.09%) OSCs. Notably, the champion OSCs achieve a certified PCE of 20.20%, ranking among the highest certified values reported for binary OSCs. Impressively, the MC4⊃C70-treated devices also offer superior long-term operation stability with an ∼90% retention of the initial PCE under maximum-power-point tracking for 500 h. This work opens a new avenue for using fullerene-embedded porphyrin metallacages as photoactive additives to manipulate the optoelectronic and morphological properties for realizing efficient and stable OSCs.
AB - Boosting both power-conversion-efficiency (PCE) and stability is crucial for the practical applications of organic solar cells (OSCs). Here, we synergistically improve the PCE and stability of OSCs using fullerene-embedded porphyrin metallacages (MC4⊃C60 and MC4⊃C70) as photoactive additives. Compared to the fullerene-free porphyrin metallacage (MC4) and MC4⊃C60, MC4⊃C70 exhibits superior photo-responsive activity, multistage crystallization behavior, and extraordinary non-covalent interactions with both the donor (PM6) and the acceptor (eC9-4ClO). Therefore, the MC4⊃C70-treated active layer attains improved photon harvesting capability and optimized blend morphology with ideal crystallinity, intermolecular π–π stacking, and phase separation, eventually diminishing trap density, facilitating exciton generation and dissociation, improving charge collection, and limiting charge recombination. As a result, the MC4⊃C70-treated OSCs achieve a higher PCE of 20.42% compared to those of metallacage-free (19.88%), MC4-treated (19.16%), and MC4⊃C60-treated (20.09%) OSCs. Notably, the champion OSCs achieve a certified PCE of 20.20%, ranking among the highest certified values reported for binary OSCs. Impressively, the MC4⊃C70-treated devices also offer superior long-term operation stability with an ∼90% retention of the initial PCE under maximum-power-point tracking for 500 h. This work opens a new avenue for using fullerene-embedded porphyrin metallacages as photoactive additives to manipulate the optoelectronic and morphological properties for realizing efficient and stable OSCs.
UR - https://www.scopus.com/pages/publications/105024752569
U2 - 10.1039/d5ee04824a
DO - 10.1039/d5ee04824a
M3 - 文章
AN - SCOPUS:105024752569
SN - 1754-5692
VL - 18
SP - 10351
EP - 10363
JO - Energy and Environmental Science
JF - Energy and Environmental Science
IS - 24
ER -