We study the temperature dependence of triplet formation and decay by considering the phosphorescence dynamics in a prototypical conjugated polymer matrix. The dynamics of triplet formation as a function of temperature are unraveled by applying an electric field during optical singlet generation and recording the phosphorescence quenching. The diffusivity of triplet excitons in conjugated polymers is shown to be independent of temperature up to 200 K. We propose a diffusion model that describes the relaxation dynamics of triplet excitons at all times through triplet-triplet annihilation and spin orbit coupling at static heavy atom sites.<br/
Excitons are quasi-particles, which are responsible for energy transport in organic semiconductors. ...
A thorough knowledge of the excited state dynamics in conjugated polymers is necessary for efficient...
A blend of two conjugated polymers with different optical band gaps and different triplet exciton (T...
Journal ArticleWe study the temperature dependence of triplet formation and decay by considering the...
The temperature dependence of the exciton dynamics in a conjugated polymer is studied using time-res...
The temperature dependence of the exciton dynamics in a conjugated polymer is studied using time-res...
This thesis reports the properties of meta stable excitations such as triplet excitons occurring in ...
By measuring the fluorescence photon statistics of single chains of a conjugated polymer, we determi...
We report the synthesis of a novel polythiophene-based host–guest copolymer incorporating a Pt–porph...
The spectral diffusion of singlet and triplet excitons in 9,9-dioctylfluorene-based conjugated copol...
A time-resolved photoluminescence quenching approach is developed for determining the triplet excito...
We report the synthesis of a novel polythiophene-based host–guest copolymer incorporating a Pt–porph...
We present optical studies of both singlet and triplet states of a ladder-type conjugated polymer as...
Understanding triplet exciton diffusion between organic thermally activated delayed fluorescence (TA...
We propose an easy-to-use method for determining the triplet exciton diffusivity in disordered organ...
Excitons are quasi-particles, which are responsible for energy transport in organic semiconductors. ...
A thorough knowledge of the excited state dynamics in conjugated polymers is necessary for efficient...
A blend of two conjugated polymers with different optical band gaps and different triplet exciton (T...
Journal ArticleWe study the temperature dependence of triplet formation and decay by considering the...
The temperature dependence of the exciton dynamics in a conjugated polymer is studied using time-res...
The temperature dependence of the exciton dynamics in a conjugated polymer is studied using time-res...
This thesis reports the properties of meta stable excitations such as triplet excitons occurring in ...
By measuring the fluorescence photon statistics of single chains of a conjugated polymer, we determi...
We report the synthesis of a novel polythiophene-based host–guest copolymer incorporating a Pt–porph...
The spectral diffusion of singlet and triplet excitons in 9,9-dioctylfluorene-based conjugated copol...
A time-resolved photoluminescence quenching approach is developed for determining the triplet excito...
We report the synthesis of a novel polythiophene-based host–guest copolymer incorporating a Pt–porph...
We present optical studies of both singlet and triplet states of a ladder-type conjugated polymer as...
Understanding triplet exciton diffusion between organic thermally activated delayed fluorescence (TA...
We propose an easy-to-use method for determining the triplet exciton diffusivity in disordered organ...
Excitons are quasi-particles, which are responsible for energy transport in organic semiconductors. ...
A thorough knowledge of the excited state dynamics in conjugated polymers is necessary for efficient...
A blend of two conjugated polymers with different optical band gaps and different triplet exciton (T...