Interface modification is an effective and promising route for developing functional organic field-effect transistors (OFETs). In this context, however, researchers have not created a reliable method of functionalizing the interfaces existing in OFETs, although this has been crucial for the technological development of high-performance CMOS circuits. Here, we demonstrate a novel approach that enables us to reversibly photocontrol the carrier density at the interface by using photochromic spiropyran (SP) self-assembled monolayers (SAMs) sandwiched between active semiconductors and gate insulators. Reversible changes in dipole moment of SPs in SAMs triggered by lights with different wavelengths produce two distinct built-in electric fields on...
Organic field-effect transistors (OFETs) featuring a photoactive hybrid bilayer dielectric (PHBD) th...
First demonstrated in the middle of the 1980s, organic electronic devices have risen to prominence d...
International audienceSelf-assembled monolayers (SAMs) are rapidly becoming an essential part of org...
Interface modification is an effective and promising route for developing functional organic field-e...
Charge injection typically occurring at the electrode/semiconductor interface in organic field-effec...
We demonstrate the use of P3HT-spiropyran blends as an active layer to achieve reversible photoswitc...
A general methodology towards stable high-performance photocontrollable organic thin-film transistor...
The fabrication of multifunctional high-performance organic thin-film transistors as key elements in...
In this study, we detailed our design for making a photoactive semiconductor/dielectric interface in...
The fabrication of multifunctional high-performance organic thin-film transistors as key elements in...
A facile method to make optoelectronic devices formed from organic thin-film transistors that are fu...
Thesis (Ph.D.)--University of Washington, 2016-03Organic field effect transistors (OFETs) have the p...
We successfully demonstrated a detailed and systematic enhancement of organic field effect transisto...
The chemical modification of electrodes with organic materials is a common approach to tuning the el...
A facile method to make optoelectronic devices formed from organic thin-film transistors that are fu...
Organic field-effect transistors (OFETs) featuring a photoactive hybrid bilayer dielectric (PHBD) th...
First demonstrated in the middle of the 1980s, organic electronic devices have risen to prominence d...
International audienceSelf-assembled monolayers (SAMs) are rapidly becoming an essential part of org...
Interface modification is an effective and promising route for developing functional organic field-e...
Charge injection typically occurring at the electrode/semiconductor interface in organic field-effec...
We demonstrate the use of P3HT-spiropyran blends as an active layer to achieve reversible photoswitc...
A general methodology towards stable high-performance photocontrollable organic thin-film transistor...
The fabrication of multifunctional high-performance organic thin-film transistors as key elements in...
In this study, we detailed our design for making a photoactive semiconductor/dielectric interface in...
The fabrication of multifunctional high-performance organic thin-film transistors as key elements in...
A facile method to make optoelectronic devices formed from organic thin-film transistors that are fu...
Thesis (Ph.D.)--University of Washington, 2016-03Organic field effect transistors (OFETs) have the p...
We successfully demonstrated a detailed and systematic enhancement of organic field effect transisto...
The chemical modification of electrodes with organic materials is a common approach to tuning the el...
A facile method to make optoelectronic devices formed from organic thin-film transistors that are fu...
Organic field-effect transistors (OFETs) featuring a photoactive hybrid bilayer dielectric (PHBD) th...
First demonstrated in the middle of the 1980s, organic electronic devices have risen to prominence d...
International audienceSelf-assembled monolayers (SAMs) are rapidly becoming an essential part of org...