Binary additives synergistically boost the power conversion efficiency of all-polymer solar cells up to 3.45%. The nonvolatile additive PDI-2DTT suppresses aggregation of the acceptor PPDIDTT and enhances donor/acceptor mixing, while the additive DIO facilitates aggregation and crystallization of the donor PBDTTT-C-T as well as improves phase separation. Combination of DIO and PDI-2DTT leads to suitable phase separation and improved and balanced charge transport, which is beneficial to efficiency enhancement.Chemistry, MultidisciplinaryEnergy & FuelsEngineering, ChemicalEnvironmental SciencesSCI(E)EI44ARTICLExwzhan@iccas.ac.cn41351-1356
The vertical composition distribution and crystallinity of photoactive layers are considered to have...
In order to address the question of how macromolecular additive processing in recent years, sparsely...
Controlling the morphological stability of non-fullerene polymer solar cells (NF-PSCs) is a critical...
Binary additives synergistically boost the power conversion efficiency of all-polymer solar cells up...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
We developed p-DTS(FBTTh2)(2):PC71BM-based small molecule bulk heterojunction solar cells using 1,8-...
The effect of 1,8-diiodooctane (DIO) on the performance enhancement of polymer solar cells (PSCs) ba...
In this contribution, we report the working mechanisms of several processing additives for controlli...
All-polymer solar cells have attracted considerable research interest due to their superior morpholo...
In this work, solvent chloronaphthalene (CN) and polymer acceptor an alternating copolymer of peryle...
Organic photovoltaics (OPVs) are fabricated with blended active layers of poly [[4,8-bis[(2-ethylhex...
An alternating copolymer (PBDTC10DBT) of benzo[1,2-b:3,4-b]dithiophene (BDT) as donor and 4,7-di(3-d...
An alternating copolymer (PBDTC10DBT) of benzo[1,2-b:3,4-b]dithiophene (BDT) as donor and 4,7-di(3-d...
Crystallizable, high-mobility conjugated polymers have been employed as secondary donor materials in...
The vertical composition distribution and crystallinity of photoactive layers are considered to have...
In order to address the question of how macromolecular additive processing in recent years, sparsely...
Controlling the morphological stability of non-fullerene polymer solar cells (NF-PSCs) is a critical...
Binary additives synergistically boost the power conversion efficiency of all-polymer solar cells up...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
We developed p-DTS(FBTTh2)(2):PC71BM-based small molecule bulk heterojunction solar cells using 1,8-...
The effect of 1,8-diiodooctane (DIO) on the performance enhancement of polymer solar cells (PSCs) ba...
In this contribution, we report the working mechanisms of several processing additives for controlli...
All-polymer solar cells have attracted considerable research interest due to their superior morpholo...
In this work, solvent chloronaphthalene (CN) and polymer acceptor an alternating copolymer of peryle...
Organic photovoltaics (OPVs) are fabricated with blended active layers of poly [[4,8-bis[(2-ethylhex...
An alternating copolymer (PBDTC10DBT) of benzo[1,2-b:3,4-b]dithiophene (BDT) as donor and 4,7-di(3-d...
An alternating copolymer (PBDTC10DBT) of benzo[1,2-b:3,4-b]dithiophene (BDT) as donor and 4,7-di(3-d...
Crystallizable, high-mobility conjugated polymers have been employed as secondary donor materials in...
The vertical composition distribution and crystallinity of photoactive layers are considered to have...
In order to address the question of how macromolecular additive processing in recent years, sparsely...
Controlling the morphological stability of non-fullerene polymer solar cells (NF-PSCs) is a critical...