Simutaneously high open circuit voltage and high short circuit current density is a big challenge for achieving high efficiency polymer solar cells due to the excitonic nature of organic semdonductors. Herein, we developed a trialkylsilyl substituted 2D-conjugated polymer with the highest occupied molecular orbital level down-shifted by Si-C bond interaction. The polymer solar cells obtained by pairing this polymer with a non-fullerene acceptor demonstrated a high power conversion efficiency of 11.41% with both high open circuit voltage of 0.94 V and high short circuit current density of 17.32 mA cm(-2) benefitted from the complementary absorption of the donor and acceptor, and the high hole transfer efficiency from acceptor to donor althou...
To achieve efficient non-fullerene polymer solar cells (NF-PSCs), three trialkylsilyl substituted be...
International audienceThe performance of organic photovoltaic (OPV) material systems are hypothesize...
Achieving efficient charge transfer at small frontier molecular orbital offsets between donor and ac...
The research on the polymer-based solar cells (PSCs) has attracted an increasing amount of attention...
In this study, wide bandgap (WBG) two-dimensional (2D) copolymer donors (DZ1, DZ2, and DZ3) based on...
Efficient organic solar cells based on a blend of PBDS-T as a donor polymer and BTP-eC9 as non-fulle...
Non-fullerene polymer solar cells (PSCs) with solution-processable n-type organic semiconductor (n-O...
Solution-processed organic photovoltaics (OPV) offer the attractive prospect of low-cost, light-weig...
Remarkable progress has been made for non-fullerene based organic solar cells (OSCs), with a power c...
Organic solar cells (OSCs) based on bulk heterojunction (BHJ) design have shown substantial promise ...
A non-conjugated polymer acceptor PF1-TS4 was firstly synthesized by embedding a thioalkyl segment i...
The use of ternary organic semiconducting blends is recognized as an effective strategy to boost the...
Wide bandgap polymers with a donor–acceptor alternating structure play a key role in constructing hi...
Large area photovoltaic devices based on an interpenetrating network of donor and acceptor molecules...
Polymeric solar cells (PSCs) have attracted considerable attention in recent years due to their pote...
To achieve efficient non-fullerene polymer solar cells (NF-PSCs), three trialkylsilyl substituted be...
International audienceThe performance of organic photovoltaic (OPV) material systems are hypothesize...
Achieving efficient charge transfer at small frontier molecular orbital offsets between donor and ac...
The research on the polymer-based solar cells (PSCs) has attracted an increasing amount of attention...
In this study, wide bandgap (WBG) two-dimensional (2D) copolymer donors (DZ1, DZ2, and DZ3) based on...
Efficient organic solar cells based on a blend of PBDS-T as a donor polymer and BTP-eC9 as non-fulle...
Non-fullerene polymer solar cells (PSCs) with solution-processable n-type organic semiconductor (n-O...
Solution-processed organic photovoltaics (OPV) offer the attractive prospect of low-cost, light-weig...
Remarkable progress has been made for non-fullerene based organic solar cells (OSCs), with a power c...
Organic solar cells (OSCs) based on bulk heterojunction (BHJ) design have shown substantial promise ...
A non-conjugated polymer acceptor PF1-TS4 was firstly synthesized by embedding a thioalkyl segment i...
The use of ternary organic semiconducting blends is recognized as an effective strategy to boost the...
Wide bandgap polymers with a donor–acceptor alternating structure play a key role in constructing hi...
Large area photovoltaic devices based on an interpenetrating network of donor and acceptor molecules...
Polymeric solar cells (PSCs) have attracted considerable attention in recent years due to their pote...
To achieve efficient non-fullerene polymer solar cells (NF-PSCs), three trialkylsilyl substituted be...
International audienceThe performance of organic photovoltaic (OPV) material systems are hypothesize...
Achieving efficient charge transfer at small frontier molecular orbital offsets between donor and ac...