Tuning the work function of the electrode is one of the crucial steps to improve charge extraction in organic electronic devices. Here, we show that <i>N</i>,<i>N</i>-dialkyl dithiocarbamates (DTC) can be effectively employed to produce low work function noble metal electrodes. Work functions between 3.1 and 3.5 eV are observed for all metals investigated (Cu, Ag, and Au). Ultraviolet photoemission spectroscopy (UPS) reveals a maximum decrease in work function by 2.1 eV as compared to the bare metal surface. Electronic structure calculations elucidate how the complex interplay between intrinsic dipoles and dipoles induced by bond formation generates such large work function shifts. Subsequently, we quantify the improvement in contact resist...
Charge injection into an organic semiconductor can be improved by using a self-assembled monolayer ...
International audienceTwo carbon-rich ruthenium complexes bearing a dithienylethene (DTE) unit and a...
Controlling charge doping in organic semiconductors represents one of the key challenges in organic ...
Control of the energetics at interfaces is one of the key steps that improve the efficiency of light...
The barrier to charge carrier injection across the semiconductor/electrode interface is a key parame...
The alignment of the electrode Fermi level with the valence or conduction bands of organic semicondu...
Tuning the work functions of metals was demonstrated by chemically modifying the metal surface throu...
Self-assembled monolayers have evolved into one of the best established self-assembly systems with h...
International audienceThe aim of this work is to improve charge injection by interposing an appropri...
The performance of organic electronics depends critically on the interplay of the device interfaces....
A series of benzylmercaptans carrying different para-substituents were used to form self-assembled m...
International audienceIn bottom-contact organic field-effect transistors (OFETs), the functionalizat...
The rapid increase in charge carrier mobility in organic field-effect transistors (OFETs) in the pas...
In this work we examine small conjugated molecules bearing a thiol headgroup as self assembled monol...
Charge injection typically occurring at the electrode/semiconductor interface in organic field-effec...
Charge injection into an organic semiconductor can be improved by using a self-assembled monolayer ...
International audienceTwo carbon-rich ruthenium complexes bearing a dithienylethene (DTE) unit and a...
Controlling charge doping in organic semiconductors represents one of the key challenges in organic ...
Control of the energetics at interfaces is one of the key steps that improve the efficiency of light...
The barrier to charge carrier injection across the semiconductor/electrode interface is a key parame...
The alignment of the electrode Fermi level with the valence or conduction bands of organic semicondu...
Tuning the work functions of metals was demonstrated by chemically modifying the metal surface throu...
Self-assembled monolayers have evolved into one of the best established self-assembly systems with h...
International audienceThe aim of this work is to improve charge injection by interposing an appropri...
The performance of organic electronics depends critically on the interplay of the device interfaces....
A series of benzylmercaptans carrying different para-substituents were used to form self-assembled m...
International audienceIn bottom-contact organic field-effect transistors (OFETs), the functionalizat...
The rapid increase in charge carrier mobility in organic field-effect transistors (OFETs) in the pas...
In this work we examine small conjugated molecules bearing a thiol headgroup as self assembled monol...
Charge injection typically occurring at the electrode/semiconductor interface in organic field-effec...
Charge injection into an organic semiconductor can be improved by using a self-assembled monolayer ...
International audienceTwo carbon-rich ruthenium complexes bearing a dithienylethene (DTE) unit and a...
Controlling charge doping in organic semiconductors represents one of the key challenges in organic ...