Pyradinodithiazole (<b>PDTz</b>) was designed as a new electron-accepting unit. The physical property measurements indicated that the <b>PDTz</b> unit has stronger electron-accepting characteristics than thiazolothiazole and benzodithiazole. A donor–acceptor copolymer containing <b>PDTz</b> as an acceptor unit was synthesized for hole-transporting semiconductors in organic photovoltaics (OPV). Furthermore, an acceptor–acceptor copolymer containing <b>PDTz</b> has also been developed for electron-transporting OPV materials. These copolymer-based blend films showed expected photovoltaic characteristics in individual OPV devices
On the basis of theoretical considerations of intramolecular charge transfer (ICT) effect, we have d...
Abstract In this report, we explore the optoelectronic properties of a low band-gap copolymer based ...
A novel strong electron-acceptor, thieno[2,3-<i>f</i>]-2,1,3-benzothiadiazole-6-carboxylate (BTT), ...
A new type of thiadiazole-based acceptor unit and its donor–acceptor copolymers were synthesized and...
Thiazole-containing electron-deficient unit DTABT as a building block was developed to construct don...
International audienceA novel fluorinated copolymer (PDTSffBT) based on dithienosilole donor unit an...
A new accepter unit, dimethyl-2H-benzimidazole, was prepared and used for the synthesis of the conju...
The π-conjugated organic and polymeric semiconducting materials have attracted much attention in the...
new accepter unit, dimethyl-2H-benzimidazole, was prepared and utilized for the synthesis of conjuga...
The development of semiconducting conjugated polymers for organic field effect transistors (OFETs) h...
Next-generation electronic devices which are cheap, lightweight and flexible could be realised throu...
Donor-acceptor type copolymers employed naphtho[2,3-c][1,2,5]thiadiazole (NT) were synthesized to ac...
The complete design, synthesis, characterization, and electrical performance of n-type donor-accepto...
The electron deficiency and trans-planar conformation of bithiazole is potentially beneficial for th...
A series of polymer semiconductors incorporating 2,1,3-benzothiadiazole-5,6-dicarboxylicimide (BTZI)...
On the basis of theoretical considerations of intramolecular charge transfer (ICT) effect, we have d...
Abstract In this report, we explore the optoelectronic properties of a low band-gap copolymer based ...
A novel strong electron-acceptor, thieno[2,3-<i>f</i>]-2,1,3-benzothiadiazole-6-carboxylate (BTT), ...
A new type of thiadiazole-based acceptor unit and its donor–acceptor copolymers were synthesized and...
Thiazole-containing electron-deficient unit DTABT as a building block was developed to construct don...
International audienceA novel fluorinated copolymer (PDTSffBT) based on dithienosilole donor unit an...
A new accepter unit, dimethyl-2H-benzimidazole, was prepared and used for the synthesis of the conju...
The π-conjugated organic and polymeric semiconducting materials have attracted much attention in the...
new accepter unit, dimethyl-2H-benzimidazole, was prepared and utilized for the synthesis of conjuga...
The development of semiconducting conjugated polymers for organic field effect transistors (OFETs) h...
Next-generation electronic devices which are cheap, lightweight and flexible could be realised throu...
Donor-acceptor type copolymers employed naphtho[2,3-c][1,2,5]thiadiazole (NT) were synthesized to ac...
The complete design, synthesis, characterization, and electrical performance of n-type donor-accepto...
The electron deficiency and trans-planar conformation of bithiazole is potentially beneficial for th...
A series of polymer semiconductors incorporating 2,1,3-benzothiadiazole-5,6-dicarboxylicimide (BTZI)...
On the basis of theoretical considerations of intramolecular charge transfer (ICT) effect, we have d...
Abstract In this report, we explore the optoelectronic properties of a low band-gap copolymer based ...
A novel strong electron-acceptor, thieno[2,3-<i>f</i>]-2,1,3-benzothiadiazole-6-carboxylate (BTT), ...