Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic electronics, has yet to be shown for organic semiconductors. Here, energy level tuning and molecular doping are combined to demonstrate controlled shifts in ionisation potential and Fermi level of an organic thin film. This is achieved by p-doping a blend of two host molecules, zinc phthalocyanine and its eight-times fluorinated derivative, with tunable energy levels based on mixing ratio. The doping efficiency is found to depend on host mixing ratio, which is explained using a statistical model that includes both shifts of the host’s ionisation potentials and, importantly, the electron affinity of the dopant. Therefore, the energy level tunin...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...
The energy level tuning effect, observed when mixing halogenated versions of similar molecules, has ...
Molecular doping is a key technique for realizing high efficient organic light-emitting diodes (OLED...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
A key breakthrough in modern electronics was the introduction of band structure engineering, the des...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Molecular doping: The standard model for molecular p-doping of organic semiconductors (OSCs) assumes...
Doping is an extremely important process where intentional insertion of impurities in semiconductors...
We study the mechanism of molecular doping of the organic small molecule N,N,N′,N′-tetrakis(4-methox...
The extraordinary semiconducting properties of conjugated organic materials continue to attract atte...
For the prototypical conjugated organic molecules pentacene and perfluoropentacene, we demonstrate t...
The aim of this Perspective is to provide an overview of approaches that can be employed to tune the...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...
The energy level tuning effect, observed when mixing halogenated versions of similar molecules, has ...
Molecular doping is a key technique for realizing high efficient organic light-emitting diodes (OLED...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
A key breakthrough in modern electronics was the introduction of band structure engineering, the des...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Molecular doping: The standard model for molecular p-doping of organic semiconductors (OSCs) assumes...
Doping is an extremely important process where intentional insertion of impurities in semiconductors...
We study the mechanism of molecular doping of the organic small molecule N,N,N′,N′-tetrakis(4-methox...
The extraordinary semiconducting properties of conjugated organic materials continue to attract atte...
For the prototypical conjugated organic molecules pentacene and perfluoropentacene, we demonstrate t...
The aim of this Perspective is to provide an overview of approaches that can be employed to tune the...
We show that the work function Phi of ZnO can be increased by up to 2.8 eV by depositing the molec...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Electronic doping in organic materials has remained an elusive concept for several decades. It drew ...