A novel perylene bisimide (PBI) dimer-based acceptor material, SdiPBI-S, was developed. Conventional bulk-heterojunction (BHJ) solar cells based on SdiPBI-S and the wide-band-gap polymer PDBT-T1 show a high power conversion efficiency (PCE) of 7.16% with a high open-circuit voltage of 0.90 V, a high short-circuit current density of 11.98 mA/cm<sup>2</sup>, and an impressive fill factor of 66.1%. Favorable phase separation and balanced carrier mobilites in the BHJ films account for the high photovoltaic performance. The results demonstrate that fine-tuning of PBI-based materials is a promising way to improve the PCEs of non-fullerene BHJ organic solar cells
In this work, we reported efficient polymer solar cells with balanced hole/electron mobilities tuned...
Bulk heterojunction solar cells comprising a new low band gap polymer (PBEHTB) based on alternating ...
A novel polymer donor (PBDTS-Se) is designed to match with a non-fullerene acceptor (SdiPBI-S). The ...
Non-fullerene acceptors have recently attracted tremendous interest because of their potential as al...
The origin of high current density in efficient non-fullerene based bulk heterojunction (BHJ) organi...
By combining the molecular donor p-DTS(FBTTh2)2 with a readily produced perylene diimide acceptor we...
Although the combination of wide band gap polymer donors and narrow band gap small-molecule acceptor...
Non-fullerene acceptors have recently attracted tremendous interest because of their potential as al...
Organic bulk heterojunction solar cells are a promising candidate for low-cost next-generation photo...
Herein we present the design of three perylene diimide (PDI) derivatives with different molecular ge...
Nonfullerene acceptors are important for increasing the power conversion efficiency of organic bulk ...
Organic bulk heterojunction solar cells, readily fabricated from blended solutions of donor and acce...
Power conversion efficiency (PCE) of organic solar cells (OSCs) have gradually improved up to 11.83%...
Thin film polymer solar cells offer the prospect of providing easy, soln.-based processing and low-t...
Technological deployment of organic photovoltaic modules requires improvements in device light-conve...
In this work, we reported efficient polymer solar cells with balanced hole/electron mobilities tuned...
Bulk heterojunction solar cells comprising a new low band gap polymer (PBEHTB) based on alternating ...
A novel polymer donor (PBDTS-Se) is designed to match with a non-fullerene acceptor (SdiPBI-S). The ...
Non-fullerene acceptors have recently attracted tremendous interest because of their potential as al...
The origin of high current density in efficient non-fullerene based bulk heterojunction (BHJ) organi...
By combining the molecular donor p-DTS(FBTTh2)2 with a readily produced perylene diimide acceptor we...
Although the combination of wide band gap polymer donors and narrow band gap small-molecule acceptor...
Non-fullerene acceptors have recently attracted tremendous interest because of their potential as al...
Organic bulk heterojunction solar cells are a promising candidate for low-cost next-generation photo...
Herein we present the design of three perylene diimide (PDI) derivatives with different molecular ge...
Nonfullerene acceptors are important for increasing the power conversion efficiency of organic bulk ...
Organic bulk heterojunction solar cells, readily fabricated from blended solutions of donor and acce...
Power conversion efficiency (PCE) of organic solar cells (OSCs) have gradually improved up to 11.83%...
Thin film polymer solar cells offer the prospect of providing easy, soln.-based processing and low-t...
Technological deployment of organic photovoltaic modules requires improvements in device light-conve...
In this work, we reported efficient polymer solar cells with balanced hole/electron mobilities tuned...
Bulk heterojunction solar cells comprising a new low band gap polymer (PBEHTB) based on alternating ...
A novel polymer donor (PBDTS-Se) is designed to match with a non-fullerene acceptor (SdiPBI-S). The ...