We investigated the heterojunction effects of perylene tetracarboxylic diimide (PTCDI) derivatives on the pentacene-based field-effect transistors (FETs). Three PTCDI derivatives with different substituents were deposited onto pentacene layers and served as charge transfer dopants. The deposited PTCDI layer, which had a nominal thickness of a few layers, formed discontinuous patches on the pentacene layers and dramatically enhanced the hole mobility in the pentacene FET. Among the three PTCDI molecules tested, the octyl-substituted PTCDI, PTCDI-C<sub>8</sub>, provided the most efficient hole-doping characteristics (p-type) relative to the fluorophenyl-substituted PTCDIs, 4-FPEPTC and 2,4-FPEPTC. The organic heterojunction and doping charact...
The transport and morphology of macroscopic organic transistors have been thoroughly explained. Howe...
International audienceA n-type semiconductor molecule N,N′-bis(n-pentyl)terrylene-3,4:11,12-tetracar...
The roadmap of developing microelectronics has a new branch: organic electronics. Organic electronic...
We investigated the heterojunction effects of perylene tetracarboxylic diimide (PTCDI) derivatives o...
Utilization of discontinuous pn-oragnic heterojunction is introduced as a versatile method to improv...
Utilization of discontinuous pn-oragnic heterojunction is introduced as a versatile method to improv...
Organic thin film transistors (OTFTs) with heterojunction semiconducting layers composed of p-type p...
Molecular surface doping was studied for organic thin film transistors consisting of an active layer...
It was found that interface barrier is beneficial to form accumulation heterojunction in organic sem...
Organic thin film transistors with a pentacene active layer and various polymer gate insulators were...
The role of lateral interconnections between three-dimensional pentacene islands on low surface ener...
© 2010 American Institute of Physics. The electronic version of this article is the complete one and...
pentacene (C4F9-PEN) were successfully fabricated. All the alkylpentacene based OFETs showed typical...
In this paper, the top-contact (TC) pentacene-based organic thin-film transistor (OTFT) with a tetra...
Charge transfer at organic-organic heterojunctions is fundamental to several organic electronics dev...
The transport and morphology of macroscopic organic transistors have been thoroughly explained. Howe...
International audienceA n-type semiconductor molecule N,N′-bis(n-pentyl)terrylene-3,4:11,12-tetracar...
The roadmap of developing microelectronics has a new branch: organic electronics. Organic electronic...
We investigated the heterojunction effects of perylene tetracarboxylic diimide (PTCDI) derivatives o...
Utilization of discontinuous pn-oragnic heterojunction is introduced as a versatile method to improv...
Utilization of discontinuous pn-oragnic heterojunction is introduced as a versatile method to improv...
Organic thin film transistors (OTFTs) with heterojunction semiconducting layers composed of p-type p...
Molecular surface doping was studied for organic thin film transistors consisting of an active layer...
It was found that interface barrier is beneficial to form accumulation heterojunction in organic sem...
Organic thin film transistors with a pentacene active layer and various polymer gate insulators were...
The role of lateral interconnections between three-dimensional pentacene islands on low surface ener...
© 2010 American Institute of Physics. The electronic version of this article is the complete one and...
pentacene (C4F9-PEN) were successfully fabricated. All the alkylpentacene based OFETs showed typical...
In this paper, the top-contact (TC) pentacene-based organic thin-film transistor (OTFT) with a tetra...
Charge transfer at organic-organic heterojunctions is fundamental to several organic electronics dev...
The transport and morphology of macroscopic organic transistors have been thoroughly explained. Howe...
International audienceA n-type semiconductor molecule N,N′-bis(n-pentyl)terrylene-3,4:11,12-tetracar...
The roadmap of developing microelectronics has a new branch: organic electronics. Organic electronic...