We use the electron spin as a probe to gain insight into the mechanism of molecular doping in a p-doped zinc phthalocyanine host across a broad range of temperatures (80–280 K) and doping concentrations (0–5 wt% of F6-TCNNQ). Electron paramagnetic resonance (EPR) spectroscopy discloses the presence of two main paramagnetic species distinguished by two different g-tensors, which are assigned based on density functional theory calculations to the formation of a positive polaron on the host and a radical anion on the dopant. Close inspection of the EPR spectra shows that radical anions on the dopants couple in an antiferromagnetic manner at device-relevant doping concentrations, thereby suggesting the presence of dopant clustering, and that po...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
The rapid development of organic electronics depends on the synthesis of new π-conjugated molecules/...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...
The enhancement and control of the electrical conductivity of organic semiconductors is fundamental ...
The enhancement and control of the electrical conductivity of organic semiconductors is fundamental ...
In recent years, organic semiconductors have become known as a promising alternative to traditional ...
Doping of organic semiconductors is crucial for tuning the charge-carrier density of conjugated poly...
Anomalous electron paramagnetic resonance (EPR) signals from formally closed-shell phthalocyanines h...
Electrons in organic semiconductors (OSC) possess remarkably long spin relaxation times. Hybrid spin...
Organic semiconductors exhibit exceptionally long spin lifetimes, and recent observations of the inv...
Editor's suggestion ; Open AccessInternational audienceThe electronic and optical properties of the ...
open12siCharge carriers energetics is key in electron transfer processes such as those that enable t...
International audienceMolecular doping strategies facilitate orders of magnitude enhancement in the ...
Organic semiconductors constitute promising candidates toward large-scale electronic circuits that a...
\u3cp\u3eOrganic semiconductors are interesting materials for spintronics applications because of th...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
The rapid development of organic electronics depends on the synthesis of new π-conjugated molecules/...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...
The enhancement and control of the electrical conductivity of organic semiconductors is fundamental ...
The enhancement and control of the electrical conductivity of organic semiconductors is fundamental ...
In recent years, organic semiconductors have become known as a promising alternative to traditional ...
Doping of organic semiconductors is crucial for tuning the charge-carrier density of conjugated poly...
Anomalous electron paramagnetic resonance (EPR) signals from formally closed-shell phthalocyanines h...
Electrons in organic semiconductors (OSC) possess remarkably long spin relaxation times. Hybrid spin...
Organic semiconductors exhibit exceptionally long spin lifetimes, and recent observations of the inv...
Editor's suggestion ; Open AccessInternational audienceThe electronic and optical properties of the ...
open12siCharge carriers energetics is key in electron transfer processes such as those that enable t...
International audienceMolecular doping strategies facilitate orders of magnitude enhancement in the ...
Organic semiconductors constitute promising candidates toward large-scale electronic circuits that a...
\u3cp\u3eOrganic semiconductors are interesting materials for spintronics applications because of th...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
The rapid development of organic electronics depends on the synthesis of new π-conjugated molecules/...
Simultaneous control over both the energy levels and Fermi level, a key breakthrough for inorganic e...