The ultrafast spectroscopy of single domains of polycrystalline films of TIPS-pentacene, a small-molecule organic semiconductor of interest in electronic and photovoltaic applications, is investigated using transient absorption microscopy. Individual domains are distinguished by their different polarization-dependent linear and nonlinear optical responses. As compared to bulk measurements, we show that the nonlinear response within a given domain can be tied more concretely to specific physical processes that transfer exciton populations between specified electronic states. By use of this approach and a simple kinetic model, the signatures of singlet fission as well as vibrational relaxation of the initially excited singlet state are identi...
The multiplication of excitons in organic semiconductors via singlet fission offers the potential fo...
In solar energy conversion systems, crucial steps governing the performance of photovoltaic cells in...
International audienceSinglet fission in organic semiconductors causes a singlet exciton to decay in...
This thesis focuses on the development and application of new methods for spatially and temporally r...
Despite years of intense study, even today there are many novel semiconductor materials whose unique...
Optimising molecular systems for optoelectronic applications requires a deep understanding of the ex...
We present a comparative study of ultrafast photoconversion dynamics in tetracene (Tc) and pentacene...
Singlet exciton fission is a spin-allowed process in organic semiconductors by which one absorbed ph...
Singlet exciton fission is a spin-allowed process in organic semiconductors by which one absorbed ph...
Singlet fission has attracted considerable interest for its potential application in organic photovo...
Singlet fission is the spin-conserving process by which a singlet exciton splits into two triplet ex...
Organic semiconductors have the potential to form the basis of the next-generation of electronic dev...
We present a statistical analysis of femtosecond transient absorption microscopy applied to four dif...
TIPS-pentacene is a small-molecule organic semiconductor that is widely used in optoelectronic devic...
We present a statistical analysis of femtosecond transient absorption microscopy applied to four dif...
The multiplication of excitons in organic semiconductors via singlet fission offers the potential fo...
In solar energy conversion systems, crucial steps governing the performance of photovoltaic cells in...
International audienceSinglet fission in organic semiconductors causes a singlet exciton to decay in...
This thesis focuses on the development and application of new methods for spatially and temporally r...
Despite years of intense study, even today there are many novel semiconductor materials whose unique...
Optimising molecular systems for optoelectronic applications requires a deep understanding of the ex...
We present a comparative study of ultrafast photoconversion dynamics in tetracene (Tc) and pentacene...
Singlet exciton fission is a spin-allowed process in organic semiconductors by which one absorbed ph...
Singlet exciton fission is a spin-allowed process in organic semiconductors by which one absorbed ph...
Singlet fission has attracted considerable interest for its potential application in organic photovo...
Singlet fission is the spin-conserving process by which a singlet exciton splits into two triplet ex...
Organic semiconductors have the potential to form the basis of the next-generation of electronic dev...
We present a statistical analysis of femtosecond transient absorption microscopy applied to four dif...
TIPS-pentacene is a small-molecule organic semiconductor that is widely used in optoelectronic devic...
We present a statistical analysis of femtosecond transient absorption microscopy applied to four dif...
The multiplication of excitons in organic semiconductors via singlet fission offers the potential fo...
In solar energy conversion systems, crucial steps governing the performance of photovoltaic cells in...
International audienceSinglet fission in organic semiconductors causes a singlet exciton to decay in...