A conjugated polymer with a low band gap of 1.21 eV, i.e., absorbing infrared light, is demonstrated as active material in field-effect transistors (FETs). The material consists of alternating fluorene units and low band gap segments with electron donor-acceptor-donor units composed of two electron-donating thiophene rings attached on both sides of a thiadiazolo-quinoxaline electron-acceptor group. The polymer is solution-processable and air-stable; the resulting FETs exhibit typical p-channel characteristics and field-effect mobility of 0.03 cm(2) V-1 s(-1)
In this paper, we report the design and synthesis of isoindigo based low band gap polymer semiconduc...
An alternating polyfluorene (APFO) with low band-gap segments. APFO-Green1, was synthesized for use ...
Three thiazole-bridged DPP polymers with deep lowest unoccupied molecular orbital (LUMO) levels were...
A conjugated polymer with a low band gap of 1.21 eV, i.e., absorbing IR light, is demonstrated as ac...
Systematic creation of polymeric semiconductors from novel building blocks is critical for improving...
A fluorenone based alternating copolymer (PFN-DPPF) with a furan based fused aromatic moiety has bee...
© 2016 The Royal Society of Chemistry. A new A 1 -A 2 type polymer pDTDPP-TTF containing diketopyrro...
A new type of semiconducting material based on polymerizable oligothiophenes (see Figure) has been p...
Two new solution processable, low band gap donor-acceptor (D-A) copolymers (P1 and P2) comprising a ...
Low-power, flexible, and properly encapsulated integrated circuits are the basic requirements of the...
Two conjugated polymers, IIDDT and IIDT, based on an isoindigo core were developed for organic field...
Two fluorene-based conjugated copolymers containing hexyl-thiophene derivatives, PF-1T and PF-4T, we...
Following an approach developed in our group to incorporate tetrathiafulvalene (TTF) units into conj...
Herein, two donor-acceptor conjugated polymers based on dithieno[3,2-b:2′,3′-d]thiophene (DTT) and t...
Two new solution processable, low band gap donor–acceptor (D–A) copolymers (P1 and P2) comprising a ...
In this paper, we report the design and synthesis of isoindigo based low band gap polymer semiconduc...
An alternating polyfluorene (APFO) with low band-gap segments. APFO-Green1, was synthesized for use ...
Three thiazole-bridged DPP polymers with deep lowest unoccupied molecular orbital (LUMO) levels were...
A conjugated polymer with a low band gap of 1.21 eV, i.e., absorbing IR light, is demonstrated as ac...
Systematic creation of polymeric semiconductors from novel building blocks is critical for improving...
A fluorenone based alternating copolymer (PFN-DPPF) with a furan based fused aromatic moiety has bee...
© 2016 The Royal Society of Chemistry. A new A 1 -A 2 type polymer pDTDPP-TTF containing diketopyrro...
A new type of semiconducting material based on polymerizable oligothiophenes (see Figure) has been p...
Two new solution processable, low band gap donor-acceptor (D-A) copolymers (P1 and P2) comprising a ...
Low-power, flexible, and properly encapsulated integrated circuits are the basic requirements of the...
Two conjugated polymers, IIDDT and IIDT, based on an isoindigo core were developed for organic field...
Two fluorene-based conjugated copolymers containing hexyl-thiophene derivatives, PF-1T and PF-4T, we...
Following an approach developed in our group to incorporate tetrathiafulvalene (TTF) units into conj...
Herein, two donor-acceptor conjugated polymers based on dithieno[3,2-b:2′,3′-d]thiophene (DTT) and t...
Two new solution processable, low band gap donor–acceptor (D–A) copolymers (P1 and P2) comprising a ...
In this paper, we report the design and synthesis of isoindigo based low band gap polymer semiconduc...
An alternating polyfluorene (APFO) with low band-gap segments. APFO-Green1, was synthesized for use ...
Three thiazole-bridged DPP polymers with deep lowest unoccupied molecular orbital (LUMO) levels were...